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F'AL.L,F_TIZED "l, fiACK '/. ? ! :.-.??^.S :?^.?:??? cm W :?..a??v?vs.?.1'« :S:zc-.:m,`.L's4.?:ac?s59m :c^J.^::cast^? «?'S? ??.:..:¢:.:C?x:a:?:r?FY"a.•..".:.: ? «a5."'.. Mi ! ! t).L'IIYGLE Ft01.!( )C'ON4'EIYTIGIYAL PALLET( )fii3i"CIMHTTC STORAGE( )EhiCAF'SULATED ? R ! ( }Df]URI.E F?OWf ?SL.AVE FALLET4 ?SOLID SNELVINGC kNON-ENCRF'SULATEI} S! Fl! ( )hSUL.TIF'LE" FiOW E?OFF..I`! T I C I _..__._c-.'ac:caCx.aa:_:?sarc?s:nc=m?.-cz.-m:: m:.-a?cr.::: .-•x.ac.-.ao.-.^.»;r.-x ;': c:_av:c-?:aac-a? c.-c^ !] ! li ! FLUE ,SF'AC;I14G: Cl.aFifiANCE:STORAGE TO CF'.l'LTMG R f ? LONGII'UAINAL TRAMSVEkSE:: n ! ? ___._._.._._.._.W._?:,:?:r??T--:.::::????_? ?v-:??=??-??:?:? :??????4?E:???.r? =?::•?-?? ??.??: G ! 3 HOFiIZOP1TFIL BARKIERi PRCitFIAEA: E i i UMI7S - DTAtfit;Tf'•:ft tl:hl.'F!? ? 4.E:hIC.TH (FDC1T) FLRW (GF'Mf) PI'iESSUkEW{PSI} F 2 : Fi ?: Em F:I' F:: 6:3 `?` En fC -8' 31 C31 B^ 9 -- -- ° Es a"' ED 0 d°'6 F=° 9. A ..ff" IE ?`a D I? E V 3[ [Z 9"°6 ?SCW??W aAE;-L_??W VZRa F•Ro-r?CYa ON 00_ ?????*c Jf18- Sf'EftRY iiEAAQUARTChS Jf7ks Nt] 1681 l?A't E 2/20lII6 F'AGF 2 ****************%k*kcsX*****#**BRANCH LINE. CAL CULAI"I014* k?**k?%?# *m**%?k?%??#X<***?k***?:?t??sk .:.^.:^_G?.'=????^.f=:?..T..??_5.?.=.^?_.^.=.-'_..-.?._".''.^..?CC:'?:??e"'.. 5?????CG?...'-..«? ?5.".'?•?.. y:?::??C? S« '?". :'_?S I•iYDRLC. DA °C° EQUIV. F'IF'E F'T PT FtEF. I'"LUW llTA. FYTTIIYI; FTGS. f-E PV NOTES F'OTi4T C!T LOS5/F LENGTHS TOT. PF FIY ?=__=?_?=??w-_T??-=???_,? -=___??_=??_:.,W-??:??_=:???T??=? ?:?:???? ___?=??=? ?•?==? =?_?_:?? 14.45 1,904 OE 2.0 3.00 7.00 Q-K*SQfitF'?:r'=* .7 4 C=120 5T 4.0 4.00 o.00 K- 5.460 V= 4.84 14.45 0,0556 ?.OG 0.39 , 1 A. 4 5 7,39 h i= 5.320 , _?._?________..------------ --------.__________ --------- ------ -------------_ ..__---- 14.4b 5.452 10.O0 7.39 Q=K*SC7Fi(F'):F'= 7.39 2 C=520 0.00 0.00 h= 5.320 Y= 2.8 54.46 0.0146 90.00 0.15 iA.4O t.R52 OE 4.9 ^ 9.t70 ? ' F7.54 7.54 K= 5.320 F'= 7.33 2 C=120 f7 $.4 8.00 ?:7,Q0 0.21 VELOCI'iY = 5.58 28.86 0.0526 97.40 47,90 7.33 .?. . . _ . ? ?.86 8.44 ni -- 4.N30 .. ___ _ 9 ---------- --- ------ 1 q.46 -_____..- 1.452 ---------- -------- f 0.00 --------- 7.39 ------ --------------- Q-K*SQR ( F' ): F'= ---_-___ 7.39 2 C-120 0.00 4.00 K= 5.329 V= 2.8 14,46 O.0146 i0.00 0.15 S A D 4p 4. R52 2E. 4.0 - _ 10.00 _ _ _ 7.54 .._7. 54 Y-- 5.:320 F'- 7.33 :-' G=120 57 8.0 96.00 0.00 0.2i NE:LOCI7Y = 5,56 28.E36 0,O526 26.40 5.37 7.33 -- -- 2F3.8b w - ^ 8.95 --- --------- - K 3= 9.670 ------- 17 -------- --------- 9A.4b ------ 5,452_ .._.._.__ -10.00 7.39 0=K*St7k(F')•'F- ?7.39 ry C=120 0.00 0.00 K= 5.320 V= 2.3 54.46 0.()146 10.O0 0.15 0.00 1,452 " OE 4.0 ' M1 ?9.U0 L « Y7.54 Y 7.54 K=? 0.000 P= 7.49 2 G=420 iT 8.0 8.00 4.00 0.05 VELQC7'fY = 2,80 44.46 t>.(7i46 17.00 0.25 7.49 14.46 7.79 K 4= 5.180 25 JOL+° SF'Efr'RY HE:ADLiUAfi7ERS ,JOB MO 1681 AATE: 2/t'.qPF3b PAGE 3 ?X%??Xck?*kc??:?:kc?K?#??k%??k?%?*#?k%??*?c?#:K:k?k?*?FL.pW SCHEMATIC%cX??k?%??kt??cW?Kk?:#???*?k?X:?:R?k**?*##A??KX?X: 19.35 ii.17 42.22 44.22 4]33»>)??2>?7>3tCC?4ftCC5CCCC6CCCC7CCCCCtCC{£CZCCCCCfiCCCtC{tCCCB ^ 4.06 26.49 42.22 " 48.16 44.22 ^ 19.92 12.08 44.69 44.69 ^ 9»7??3>??iQ}>7iiCC{12CCf4a?CC14CCCiSCSCCCtGCtf<C.CtCi.tCCCCC?CCCtC9Es ^ 3.41 28.43 44.69 ^ 98.35 86.91 ^ 27.66 8.67 45.39 45.35, ^ i73?1>3>?'>i{?5?714CCC20CCC2iCtC2?cccz?ccccccc<cc<cccteccccccccccec2Q ^ 9.47 26<85 45.39 n i59.68 132.30 ^ q4.F34 ^ 2StCCCCCCC?6CCCCfCCCCCGCCCCCCtCCCCCCCfCCCCCCCCCCCCCC<LCCCCCttCCCC?7 41.84 n 174.14 n 3i5.10 ?BCCCCCC«3% V 140, 97 4 40. 97 ^ 38.40 V `?9?CCCCCCC<.C.[CCiCtCi'CCCCCCCCCCCCCCCCCC?<CC{CCCC<C<CC4CCGCCCCtCCCC30 ^ V 502.57 102.57 ^ 35.49 V 39tCCtGf{CCC?{{{C{CCCCCC{.fCCCCCCC.tCCCCCGCLC<CC{<CCCC?C{CCCC?.tCCCC32 ^ V 67, pE.; 67.08 ^ 33.68 V 33CCf.C;CCC{CCCCCCCCf.CCCC<{CC?'C{CCCC<CCCCCCCCCC{tCtCCCC<CtiCLCCCC{L;3A ., v 33.40 33.40 ^ 33,$Q V 3"ifLCCtCCCCCCCCt.Cf.<CLC«CG<CCCC{<CCCCCCC{.CCf€CCCCCCtC?C::«CC<CCtC3b _ . ..._. . _ _ ?. a.. .. ?._ _ 1.. ,JQS:,- S'PEr,hr air?aDczUnRTcR:, Jax; nn 1661 nArE <.?/•vof86 PAcE a FLC7CI6{ CALCUI.ATI01V*:Kk:*********?K***'*:k**#****:K??** a ??::?? ??:?=c: ?::?'•. W.??:w a:_::c.^Y:r.: m::? :: ar.w:.^::_cr.r'.«.:x::?::-:'.;::_-: ?.?:? ".:?.^..::src??.:?.::::e:ceawxr_e?'T:::? :? _':.::d :.._........?.....__..........e.?.e.... i-IYDRLC. i2A °C° E@UTV. F'.T.PE F°7 F'T fiEF. F'LOW DIA. F'IYTYhG FTG.va FE F'V hiQT ES F'OSMT CdT LOSS/F LE;NGTHS i177. PF P14 .._.,...__._.?? ?? _,._._.._ W:??.::___.?.__.,.;..:_•-:?. Y ??-:??:?..._._??.:_:::_?v- ?--- ::.::?:----:--?::.,????:?????-___.._??.-w :-a:T__?-?? _1i.47 C-f;.?0 i0.00 8.24 Ct=K*SIZF;(F') : F'= 8.29 4 i,qS:' b.Ut? U.{?k? h= 5.320 V= 2.16 - f 9 e 1?-+J.4)0'?4J _._____ i Q.00 .___ -0.09 i5.43 C=12e _______-__..__._._ 5a.00 _._____...?_.__. _.______ 8,20 --•-----____..__. iC= 5.320 __.??___.?__...? F= 8,20 3 1.452 O.At? 0.(70 VELOCITY = .79 4.46 O.M4 i0.00 0.01 4.06 :2 8.21 C:S (35 -------------- t;=120 13,00 8.94 Cd-=K*SCtk(F') P= 8,44 i 1.687 0.00 0.00 K= 9. 4'30 V = 64 91 4E3: S 5 0.0653 1..x, 0O 0.85 50.1 S' G-92() 11,58 ._ _.._9..2f9__-_-- -...--'K:. 9.93b F=5'.a9T 9 1.687 0.04 {).O(3 VELOCII'Y = 14.11 98.35 0.2450 94.56 __. 2.89 di.33 - -- C=129 -.. ._________ 93.(?0 ___?____----- 4?..93 -------------_.- K= 9,674 _-__?.._-- ?'=- 5...40 17 1.687 4,00 0.00 VELOCITY ? 22.91 559.68 0<h0Ob __ _ 13.00 7.£3? -9&.:'1 C?#2U __9Q=4d _ _._3,?.94 ___.__ __- ?- _5.1?3i? - P= -i°.94 25 1.687 6,00 0.40 VELOCITY 20.23 14M7 ---------- 0.4769 ------------- 1(}.00 ------------- 4.77 -------------- -------------------- ----- 29 31 33 35 36 -3$.40 G=-f 2fi d.687 502.57 U.2648 ------------- ....,5A9 G=520 ? 1.687 67,08 (7n 1207 -:33.6$ C='920 i,b87 33.44 G,0332 0.00 G=12D 1 .452 33,44 O,0665' 0.00 C==720 1,687 33.40 0.0332 11.00 24.71 CaA= -38.40f-T= 24.79 R.00 0.00 VELOCITY = 14.72 f1.40 2.97 51.5#3 27rb2 a.OF7 0.00 tt.5s i.4t? 43,44 29.02 (?.00 0.4}0 13.00 ------------------- 0 .4,3 -- ---- 495.0i -- - 29.45 2T 9,0 16.00 0.04 :'ii.pi --------- --- ---- 14.56 - - - 1;3.OG ---- -- 44,04 4.e4 0.90 i3.0t1 0.43 QA= T-35. 49P7 = 27. 62 VELOCITY = 9.5: OA -: --33. fa8P7 - 29. Q:.' VELOCITY = 4.79 C+A= O.OaPT-- 29.45 VELOCITY = 6.47 CIA-__ -_.O.t7Gf'T=?44.Di VELQCI'tY = 4.79 ._ ..___________..__.__-______...__._._____-_-_..____________________ :3,3.&8 C=420 11 .58 44,44 CdA- 33.68PTw 44°A4 34 1.687 0.00 0,0E3 VELOCITY = 9.62 67.438 A.12G7 11.58 5.40 _tCiS- SF'EFiRY HEADQUAfiTEfiS J0B MO 1681 D(-1TE 2!20!E36 PAGE 5 FL(lQR CFYLCWLATI0N*****#**%##*********?********** HYDkL.C,. Ola "C" ECdU:C`d. PIF'E F'7' F7 REF. FLOW UTA. Fx'1'1'ING F7GS. F'C PY **)K** MOTES F'CIShiY Cdl' LQSi/F LEI`IGTFIS 70T. ?''F FM a........?.......__v ;:axa.-? cazcrw.:::3x as»?»??: s ?a: ???:??c+Wr .- :-?? x??z -?RS? ::-uxwax:.? :xr»c :c.-r._^r.-^:°?s 33,4? C=h'.?G 1E1.41 45.84 QA-- 35.49PT= 45.94 32 1.687 0,00 0.00 VFI.CtCIfY r 54.72 142.57 0.2698 10,91 ._ __-_.. 2.89 _ - 102.57 48.73 CS 86 30 -_ 3Ei.4(3 _._____ C?-520 _________._ ____..-:w.._ 6.04 _.___..__.__ 48,13 _.______.__y__________=_____.. L?A- 38.?iQPT.- 48.73 30 1.687 1T 8.0 8.00 S1.4Q VELOCITY = 20.23 140.97 4. 47b9 14,00 --- 6.68 140.97 - --- 55.40 CS $7 28 .Yqg pry _ C._q'Cl ____ f.00 9.2q-- ---_____aA-i9.92F'7=H_9.24 9 5.452 fT 8.0 8109 0.00 VELOCITY = 3.86 --49,92_-0.0265 --------- 9.00 --0.24 . . . .. . .. . . .."1T.??n:.? ----------- ------ . .,...... -........._... 9.05 - ._. ... . ...... . ... ... ,. ?-._ -.-..-...._.--• ?..? ?? 28.i7 C=420 - -- 40.00__ __9,14 _ ? 4 QA= 28.f7P7= 4.14 12 4.452 0.00 0.00 VELOCITY ? 5.46' 28.17 0.0503 'fQ.00 0.50 16.52 C-12O SU.('}0 9,b5__ ____ fi=^ 5.320 F`= 9.65 13 1.452 0.00 Q.oo VELOCITY = E3.66 44.69 w U.1182 4Q.00 1.18 O.Ut} ~ -C=4?U _ __________ .._f?.Oq _.» __44,{?3 V-. .._____._?p=_____0.04F'7= itr.83 14 4.452 0.00 0a00 ' VEIOCI'iY ? 8.66 44.69 0.4562 t0.00 1.4£3 0.00 C?-12U iE: 4.6 218.00 12.01 Y L7A= O.OOF'T= 12.01 15 1.432 ST 8,0 12.00 ' 4.00 VELOCITY ° 8.66 44.69 0,9i$2 230.00 27.24 44.6'' _ ___ _.________ ---39.21 -_ R _ -CS 87 75 -27.bb C?=ti?p #.a0--- -_5.?..13-_ ____..__-QA--V-27.66FT= 12.73 77 1.452 9T 8.0 8.00 {),00 VELOCITY = 5.36, -27.66-0.0486 ___ _ 9.00 -0.44 __ _ ,. _ _ -2.7,66 _________ _________ _________ 11.69 _._----_____ GS 87 tis <..«?=s? r.aez.:aa?a??s-:.-rs?a??as?.r.?c?aaa:m.°s: .- :ws?.:c.-?cx?::raa'? :c=swcWSU -cmm?xWsas?«??a _ JL7R- SF'ERRY _ . HEADCtUARi'E:RS . ... W. .. ..w. JOFJ .... .? INo 1683 _ _ _ . DA'T'E 2/20/86 F'AGE: fr FLUQFt GFaI_C ULf17IClh1*t***?k**N:******#***#***%c****** ___ _..___??- ?___..__? ?:?-,-?:wM?a,? : ?: ? r? ?? :??-.-???•:::????: W:??_??: _.?-,?_?,::_-?.?:?.:_=????W? HYAi:L.C. UFa °C" EQUIV. f'IPE P'i P7 REP'. FL.QW DIA, FYTTII4G FT'GS. FE F'V :???*W NI77ES PUThIT t3'i LCISSfF L.E.NG71-IS TU7. FF F'M ._...___='__ccc .°^?o?mas?:?????e._.-?as __ s-_:ea.z: __=?•,?.?.?sa:x?cx: an??: _?s:-::.r:e-::c?.:?-?nc°??: W?s? 26.85 C020 fi7.o0 51.68 UA= 26.E35PT= 11.69 20 5.452 0.00 4,40 VELQCS7Y = 5.2 26.85 fla04f?0 10.00 __ . 0.46 _ . ` _- ... 2fs.85 . _ S4 -.^. f2. __.._? ___. ._____ -_ _.-CS $7 . 21 --------------- ------- 1£3.54 --------- C=1 .??0 ------- ------------ 10.00 --------- 1204 ------------------------------- R= 5.324 F'= i 2. f 4 '.?f 1.452 0,00 0.00 VELOCYTY = 8.75' 45.39 0.0K 10.00 V 1.22 _ ___ _ w.U4 G=i2h t0effi4 __ _-43.36 _ ?.?._?A,._ __G.06F'T= ^13e3ia 22 5.452 000 0<6p YELOC7TY ?$.79 45.39 GM16 14.00 __ Y 4.22 __ - - ?. DO C:=S 20 1 E 4?(1 269.09 1407 -__ ___ - ---CJA=_ _O.40F'T=? i 4.57 23 5,452 37 8.0 12.00 0.00 YELCICT7Y = 8.79 'a5..'?9 0.121i5 . 221.Da 26.89 45.39 --- -...--...._...._.--._r _..........e_._.,-- 44.47 -_........._..___.---.Y_..."..._..."'.`..._,...- CS a8 24 ----------- ------ 44.34 -------- G=46C1 ------- ----------- 5,00 --------- 14,94 ---------------------------- Ct=K*SC3F:(F'): p::: 19.94 25 1.452 11' $.0 Ko0 0.00 h= 0.000 Y= 8.1 004 G.i()46 9.00 0.94 ?i.84 _ ____ ____?0.88 _ __-CS-i3e 26 ?F3.A0 G=M12:1 44E T 4.0 __ _20rr'.00 --- -'-24.;75 ____ ___.__[?=K?SCtR(F')?u F'- 24.71 'S' 1.452 2T 8.0 50.00 0,00 K= 4.004 V = 7.44 38.40 0.0892 269.00 24.Q2 38.4!? _ __ _ ____ _y___ 48<73 __.__.--rt _______ CS 88 _____.___ 30 35.4'?' C= 9 2U _ _ 1 E: _____ 4.0 ______.._._- 216.00 -_-_...__.____ 27.62 -._.,___-___...___...__ O=K*SC3k ( f' ): _-`_1_.._? 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F.i.i.T'TMi; F Tf::;;. 1='E F'V ****W Nf3'1"ES f`C1TtkT @1' LfJSSlF LENGTHS ?OT, F'F r'M _.___. ___.--- _ ___---- 14.45 --------_ i.104 __._.......------._ OE 2.0 .............._..._.__._.. 3.00 ._._..._.?_................ 7.00 ..................._.__.._. _...._._...__._..._...._.._...__ __..__...... Q=K*SC]R(F'S:F'- ;a 1 C-120 iT &0 4<0G K00 r;:::: 5.460 V ?- M4 14a4s - K0556 - ------- - - - -- . 7.00 .. .. 009 . . _._.. .._..__-._-_- _ i4.4a - - - _ __ .. . ..-_...___.._ ................ .. . 7.;39 K t= 5024 2 ----- -------- -------- ---------- -------- -------- -------- -------------------- i'e.46 4.452 iC,,00 7„39 Q=K*S0h(F`):F'= 7.39 2 c=s:o 0.00 a.oa h= 5.320 v= 20 --------- 54.46 -------- 0.046 -------- ---------- iO.Gr - (?,7°_> - -------- -------------------- 14.4G 5M2 OE 4.0 ------- 9.t10 ------- 7.54 :.54 K::= 5.::520 F`= 7.33 :.? C=i 20 9l' R,q 3.40 O.00 0.21 VELUGI TY = 5.58 2806 0.0526 17.OC 000 7.3:3 9 :'&;3F SM K t- ?.5'30 1/t.186 3.452 , -__ ___ _._._-----__ 10,00 _._-_.___._ fM _._....-- -.---.....--•--__ L7==1C*S0fr(F'):F'= ...__.__._ 7.39 i C=120 {).pq M0 K= 5.320'V = :.9 -------- 1K46 --------- KU746 ------- ---- ------ 10.00 ---------- 47115 -------- ------- -------------- ------ S Q.4O K452 :.'.[:: 00 10.00 7.':i4 7.54 K-= 5.:320 F'- 7.33 2 C-120 iT 8.6 16,00 o.30 '?J.21 'df:L.OC.T.'i'Y = 5.58 -------- ,:? ?''3 . 86 --------- 0.0526 ------- ---- ------ 26.00 -- i M --- .7133 ------- -------------- ------- 2B.,8C -------- ----- 8.91 K ..5= ?.670 17 -------- --------- !?d.t.". ------- f.4S?? ---- ------ -- 1[s.U{l --- ---:.34 0=1C*S0fi(F') F'-' 7.39 2 C=i 20 0.34? 0.00 fC= 5.320 V= 2.8 -------- 44,46 --------- 0.0146 ------- ---- ------ 10.00 - OM - ------ -------------- ------ 0:.()U 5.452 OE 4,0 --------- 9.60 ------- 7.54 - 7.54 tC= C7,()00 F'= 7.49 ;' C=920 11' 8.0 8,00 t'?.O(} U.OS tlElOGSTY = 200 -------- !4.46 --------- 0.0146 ------- -- - A7,t7{; 0425 :.49 - -- -- - - ------ 14.A6 -- ----- ---------- -------- 7..79 --- - ----- ----- F; 4= 5.180 25 -------- --------- ------- ---- ------ ---------- -------- ------- -------------- ------ ... ? ?.. ? ?.._ .. ._ JC?P- EF'ERRY i±EADDUf,FiTERS - JOH iYO 1681 DATE 2.`20/86 f-'r-iGl_ 3 19.:31 i i , #? 42,22 42.22 iJ]??3:.?>'i2??:i?x3:CCC?iCC<_'CSCCkC?CfCC7Ci{':{.C.LL?.Lrltf.f{?'{{C{CCCCCCCC? n 4.06 :? &4 9 42.22 n 48. 16 4202 ^ 1902 12.08 44.69 44 .;•sa ?3>}?r3>331(533}i1CC:i2<CC',3CCCi4C{CsSiC(:C{CC{?LCCCfCCCCtC;:?CC??'CC16 h 3.91 28.17 44.69 A yJ. ^.S €:35.91 ^ 27..6E 8,.67 45.35' 45.:57 ^ 97??37}>JiiB]7>19C<:C2?C<CtiCCf.2:'?{:C2;?CfCCCCf?CCC?C.;.CCLCfC;:CCCtCCC??4 h fk) M 26n 8.i 4509 i' i59.6S 132,30 n 4iM ^ 25C?CrC;tC25tLCC.?`CCtfCCCcc<c<;f_Cf.i.C;.fC?C{CCCC?.CCi.;.C.:CC.CCCLiCCCCfC'.?7 41.84 n i74,9^3 ^ 315,10 28CCC{{CC<37 V 140497 140.97 " 33,40 v ?v 102.57 102.57 ^ 35.49 V A v 67. 08 67.08 A 33.68 v ;i:?Cf.t:{:i.i:C{:C'.f'.Ct:CC:t:CC:C<:S.i.f:CCCr{ (:C:CCC: erCCCC<Cf.<.f.CCC:t CC: t:CfCC{f.C<.C., t34 n v 33.4D ;33..40 ^ 3;3 M St 35CCCCCCCi:.CtCCt{:C:CCCCCCCCi{:C:{.<(:C{:C<:?:;'CCCt'CC<::fS?,CiCtCC{<r{CCC{C36 .? ? ? a ?. . :. a. ,? .. . ,.. ? , . -. ?.JC1Tt.... S'f°'E liRY III:::AT7QUAFiT'EFiS ,.1t7X:t N(J 4681 T}idF'F:' 2/20%86 F'rSGE 4 EL_bClk Cr1LGllI_r1'i.T.0N*x****M?*** **%?***************** - -- ----._. _.. __ 1•IYT7Fil_.G. .... _......_. _. _.. _...... _ CxA .._.... _.. - -. __ _ ... C. ................ _. _..._. _.. _.. E.niJSV. ......_.._..._............ F'II'E .?....._.........._. _......._.......?... PT _.. . F'? r:rF., ri._nW S,:rF, F:i:T'?'TNf:: FT'C.0 ;='E F'V MO'TES F'C1SN'T --?--- -- - OT -- !_OSSJF i_ENGTHS T'i.)'i'. F'F F`N . . _._ . - - - --___....... -i1,43 ..._ .............?.?....... i:==i?.G ....__..........____._.. .......f._....__--.... 10.00 _..........._.._._....__..._.__. 8.29 _........_._.... ..............?.? ....?..?.., ?........ ___- U=K:*SCdfi(I:')F,-, iay.:.4' 4 1.452 o.,oo 0.00 i<=:: .,.320 V - 2.16 -------- -11.0-0.0090 ---------------- -- 1+7.00 -0.09 ------- ----- ----------------------- i5.23 !::=12C1 -------- -------- i4.Q0 ----- 800 K= 5.320 I•'- 800 , , i.452 o:.oo (7.00 VE:'Lf:iC}:7Y = ?74 4.0S 0.C5Ui4 10,00 0.01 Rb.Qc; 8.21 CS 85 i '- I ------ , --•------- 4f3.iL -------._ f.:==120 ._....._._____- ___...---__ 13..0{) -----._-.------- E3.44 _°__.__ ----___._....-....--._-.....__-_-_. Q"I<M3(7F'<(r'7: f'= 8.44 i 5.697 0.00 0,00 li= 5.930 V= 6.91 48.16 0.06::53 i3r0(} 0.E35' `_.?0.19 r;020 - -- ---.._....,.__ 11 .'>3 _._ _ 9.:9 K-- 9.43(} F'= 9.2? 9 1.687 0.90 o.t)o '+tEL(]C.'77Y = 14? i 5 98.35 ().2=+50 19.,5£; 2.E34 , f;i.':?+;5 _ C:==i',?(i ____------- ------- 13..00 - 1:'.1:. ? t{= 9.670 f'- 12.13 ' 47 i.,687 0.00 o.(i0 VEI_.CiCT'TY = Z:;?,?t 159.68 .,?6006 i:i.00 7,841 48.71 C'=i':?{} 10.00 99.94 li= S.iSO P= 19.941 25 5.687 0.00 0.00 'dEl_OC:T7Y = 20.23 -- 140.91 --------- 0.4769 ------- ---------- 1 t}.0O -- - 4.77 ------------ ----- --------------------- -38.4B L':=120 ----- 13.00 24.74 C3A=. -38.40F'T= 24.7i 29 1.687 0.60 0.00 VELOCITY = 14_72 --------- 102,57 ----- {),.2648 11.(7fJ 2.93 -3>a49 C::::`I?O ?...._._?..... ......54.^'}8 27.62 QA= _•35.49PT^ 27.62 31 i,3$7 0,00 0.00 VELOCITY - 9.62 67.6£3 O.i:?(Q`l i 1,5i3 3.40 -33. E,8 C'=:: i 20 - ----- i 3. OG 29,02 C2A:::: 33 . 68PT = 29.02 33 i,687 0.40 o.Oa VELOCITY = A. 79 33.40 G.0332 13.00 (7.4:3 , 0.(30 C.-::•';';_'U _ ... .._. -....___._. 195,01 29.45 QA= O.OOF'T- 29.45 35 5.452 2T c?.p 16.00 0.oG VELOCITY = 6,47 . 33.40 (?.ObPr9 219.04 iK56 D.GO _ _ C=120 ______--- -----.-.--- 1&40 -.-. 44.01 Qfi= t?.OOi°'T= 44.01 36 i.687 o.oe 0.00 VELOCITY = 4.79 33.40 G.0332 13,00 U.4:3 :i3.f.?4? ------ C=12CY _ __.-_----- ---- _------ i±.!?'?', ----n --__._.._ -_ '4q.A$ .?__ (7A= 33.60F'T::° 44.44 34 i.687 t?.OP. 0.00 VLLQ`i'Y'rY = 9.62 67,08 () ? 1:'ii7 9 4.58 1.40 _ . _ _.. _ _.. _ _ .. ,,. _ .... . ... . ....... .;aB- rr-??ERxr HEanc?UAR7?RS ,.. . ... JaB Na 1681 L7ATE 2: 2o.f8a PaGE v> FLaOrt c:?i_?,!?{.. .nr:?cari?-?:?: ??:?:r•*?? ?:?:?***??-x??????????? FfYDF'iC. CdA C. c.Cii_s7:V. !'?i'F_' PT E•T RE:"r. f-I_.i]EJ TtTA, FITTSl4G FTGC. ??= PV *****. NC]TES F'f?714"( . RT Lt7SS/F LEhIGTti; TO:', PI° i°'I4 . __..__......... :5.`> ...------.__ C=120 ._------ -......_.........'--.r^....._- iCS, , --..',._+ 45.84 C2A= 35.49P't= 45.84 32 4.887 0.00 43M) 'vF:.l_.:1C.T.'1'Y - 14.72 i02.57 0.2648 IoM 2.89 I02a5J _.. .. .. 48. 73 i.J 86 30 ;?B.4o ....__..___ c=1w7O "'_".._....'"_ ____'___-_..___ 6.oo .-__,.._..T-- ?k8,?. ............"_'° "_____'-__` _?_"=_'._._....... C?A-- 3t3,?n, r- 4e.73 30 'iM81 iT 8.0 8.00 0.00 1fFL.QGITY = 24,23 140,97 0.4769 34.00 6.68 ----------------------------------------------------------------- g4O.97 55.40 c;; 87 zts ---- - - - - - - - - - - - - - - - `?l i.l2 - -- -- - ?.=i<??;? p---- '} 40 --....._._.-_.-.--•---_ ?.29 ._._ Qn--: ....TGlMPi= t}'',29 9 i.452 ST E3.0 8.00 (}.oU v'C:I_OC.i.l'Y = 3.86 -79.92_.0.0:65 i.00 -0.24 -4?.9a ____ ___ -_--.. --"_9,?5_ ^n.. CS 87 iQ :8.17 C=120 St}.00 9M OA= 28.9:P'i= 9>44 12 i.45: 0.00 0.00 VE:L.QCITY = 5.46 26.0 0.0503 i o.0(1 0150 i&5'v' ("=120 ^ ~ 10..00 9.65 K= 5020 P= 9.65 13 5. 452 0.o0 0M :'E:L.OG:B:7Y = 8.66 44.69 . 0.1182 1 f7.Ofi i. 113 __-- .. 0.0{3 ...-.______.._r_.....-....-___ C,::-1'??3 --_...._.._....___ 1f?:.0o .......».........._?.............._ IC1,C3a _................_._...""__"_ `" _.__'ry C?iA= ?n?OF'i= 50,?3,.? 14 1.452 000 0.00 VELOCI7'Y = 8,66 44.69 0.ii82 i0.00 S.Scs 0.00 l':'- i'.? C1 1 1:= 4.0 2M00 0011 i 15 i. 452 9 7 80 12.00 Mt) 44.69 0.I'I82 :.?.3U.OC7 21.20 ----------------------------------------------- 14. r',9 34. 2! 16 L:Am 00OOF'7` 0.01 YELOC.ITY ° &66 ----------------------- C,S' 8? ..--_"______--vu.-____....--____.........._. ;_..?.y_.........-».............? ..?--......._..?....._.. ??,w7n?.fC? ?.:=?ili?'.} inVo 1n..M Ll'Y1= ....st7.i.)?'!PT= i2ela] s? i.452 Ir 8,0 3.0e Koo dELoczrY ?.-. 5.36 -27.66--{)0485 9.00 -0.44 ".?l.Fab -_....._...._- ____?1.?9 T CS 81 iH , . , ?. ? - ... ,. _- _ . JOR- SPErRY FkEAI7QUAF:TC.Ra JOB I`!O 9681 TJATE 2:20/86 ;=`AGC: 6 FLC1i7R i:r'tl...t:'.IJLAY':i:llNXt*:;t'Mk}:?MskY,t** :w*%k*N'71:**********?k*** f-iYDhi_C. GFt aC" rC?LiIV, 1=':[1` E PT F'7 i"iF.::F. rL_OW 1?IR. FITTISiG 1=TGC. F'F F'V *?*** I`IO'TE.S i=':)Tt'iT --- C2T LQS',S/t L.i_NtrThiS T O i. !,i' PI'i 26.85 C;:::12() 1(7.00 y':.6£3 W 26.65F•r= I; .6a 20 1.452 J.pO 000 `dl_I_OC.T.TY = 5,: ----------- 26.85 ------ M460 -------- --------- 10.{)9 ------- 0MI, ------ ------- ---------------------- 2b.85 _ - _.._1239 C,S 87 ai ----------- ------ S F.54 -------- C==i 2G --------- -------- 1000 ---------- 12. 7 4 ------- -------------------- M= 5.320 F'== M14 'Zi 5.452 000 0,00 ti'ELOCSiI` = Ei.?? ----------- 4509 ------ O.??vM -------- - -- 10.00 't.ry;z - - -- ---- ---------- - --- - 0.c>0 c=-120 -- ---- -------- 10.00 - ------- iWaa - - -- - - QA= o.ooPT= 1306 22 i.4 i2 0.00 Q.OU i1F_LQCITY = 8.79 ----------- 45.39 ------ 0.121E -------- - ------- 10.06 -- i.2w? - - - -- ------------ -- - 0.0(? C=120 - 1E 4.0 ------ 209.00 ------ -- i407 --- - -- - -- QA= O.OOF'f= 34.57 23 i.45: 4T WG 5:.'..00 C1.i70 Vfl_DCT?'Y -8.75' ----------- 45.",,e9 ------ (),'106 -------- - -- 229M 26.139 ---- ------- ------------ --- --- 4:}M ---- -- -------- ------ &,47 - - CE Be 24 ----------- ------ &. 84 -------- C=? :?G --------- -------- t 5 1.. ( ? ---------- =; 9 . 9 4 ------- ------------------- : F'•= 9.94 C #=K* ClR {fi ' } 4 S i?? { 1 n?ATCi { 3 Fy' Ra/? l? / ? ( ? p c.)aVlf / ? ? ( ?/ 1lrtll'i y ? / { / y Y ? ( ( y /V ? { i*. - iaOVOa 3 ----------- 41.84 ------ 0.1046 -------- -------- 900 - E?M ---- ------- ------------------- 41.fj4 - ------- ------ 20.88 CS £3o ?6 38.4C) C==i'.?0 ...., 911' 9.G _----- :?{?'r'.Of;; -..._._._.._... _ 2?#.i _. - _ .._. ?r [a?-h?k5[aF?(r?): F?__ . ?s z4., ? 29 1.452 2T 8,0 60M n.fl0 K= 0<000 V= 7e44 38M fJ.Ot392 269.00 2002 30 38.44 48x73 CC' 88 ----------------- 35. 44 -------- C-i 2G ------------------ 5 E 4.0 2M..7D ------------ 27...'.'i ---------------- 17=P;*SCtfi ( F'): -------- F'= 27.62 34 fi.452 2Y' k3, (} 20.00 0.00 K= 0.460 V = 6.87 asM 0.0771 236.00 18= 55M 45.54 cs se 32 ::3.6f3 r.:::_520 __ _..._.-__------ 204.01 _..____.... _ 29.02 _ _ Q=n*scaR(r-): P_:: 22.02 33 1.452 21' O,U 16.00 000 \= 0<000 V = 6.52 33.68 0.0700 220.,01 95.42 .. _ .. Jt:IEt- S1='E _.. .. _ .. . . .. ...... . ... RRY HEFtDC3ClARTERS .... ,,. . .. „ ... _ JCtEt NC1-16g+ . i}ATf: _ 2/20/£36 I'=FiC:E: 7 ?K??:#>k7X5R%k iK>YktrkBc?ca;cY?%k'M??k?,k.'?r>k?XW`?:k?k>k;:? i "i...(:10i't (:r1L..(vLII_A7'7:f:71`I*W* ***>'F*'M****Nc:kYkSK?***M:k}kk{*W.*** - !-SY3?Fii...C, 7A "+:," EQ1.7:L4'. 1=']:P- PT 1=„ RF::F. ?='LtiW D]:A. ;'-'I77TNG 1=7GS'. f'C: F'V **IW* !`fOTE'.: Pt7:Cl'll Oi I_.C)S'S/'t' LE1`fIx rE;S rO-; . Pr F•N MF,8 M44 c? Be 34 •?6.s?r> ._::???0 - -e?,«c, _ _ -_fs.29 Pra= 26.49Pr-. 8.29 4 1.452 0.00 f7.(>CI VEI_U(:;I'iY = 5.13 26.45' 0.0449 ____._._ . ._ . iOM 0.=3.5 - ---------.--__..__.._..__.____. 15.;T;:S C:-=420 __ ... ____ ....__....-_.__._ 10.00 __.....-........._..-- 0.74 ----._.._-- K= 5_320 F'= 8.74 5 i. 452 0.00 OM VELOCITY '-: SM -------- 42. ^H? --------- 0. 1 Ob4 -------- ------- 1 O.O(i 1.06 - --------------------- 47.{747 C;::::120 - ---------- i(i.OG --------- 9„3'i ----- - QA= t7.00P?= 'i',8'i b i,452 0.00 0.00 VELOCITY = 8.18 ' ---------- 4202 ---______- M064 ------ io.oo 1.06 0.,t)n --- i::==920 ----.._...___ SL: <t.t? _.-_..........._._.-_ 232.00 ......__.-_._--- 10.87 ----- CdA= 4MPT= i0.87 ? i.452 iT 8eC} 28.00 O.t)U VELOCITY = i3,fS ? 42M 0.4064 260.04 27.67 , (7.U(7 _. _. C:-i:?4:, .._-_-_--- _....__.._._____ 1?.04 _.__.._.___-_. 3t3.S4 -__.....__...... -.--m--. _ _ CBA-- UM1=''i=: 3E3.54 u i,687 o.t}o 0.04 VELOCITY - 6.05 ' -------- 42.22 --------- 0.,0.`:>1:; -------- ------ 13.O{7 O.67 ----- ------------------- 44. 69 I:::-1 :ZQ -- ---------- t i..`.>s3 --------- 39.21 -- QA= 44. E9F•T= ;34. Y 1 96 i.687 i^M 0.4c1 VELOCITY '- 12.47 ? -------- 86.99 --------- k?. 049 -------- ---- 9K58 2.26 - - - - 45.39 C=.92O ---- ---------- 12.45 --------- 41.47 ------- -------------- - - - UA- 45.:39P'1'-:: 41.47 24 1.687 0.00 t?.fii0 4iL:1_pC:C'?'Y = 98.98 t MM 0,4240 12.91 5.48 0.84 . _--____ (;-i20 ....------- ------ ---- - - 4M ----- ---- 46.94 ----___ _......_.._..._- -------------- - C7A- 4K84PT 4&44 ' 27 5,637 1 T R, O 8.00 {}.00 VELOCITY = 24.99 -------- 1 i 4M --------- 0.7051 -------- --- 12. 00 8.46 ----------------- - 14O. 96 W20 ----- a'[_ 6.0 ---------- 49.00 --------- S_`a. 4C' ------- -- LZA-:: i 4O.46F'T= 55.40 28 2.5E39 1T'12.0 37.i'v:1 0.[1t7 VE:I...L)C:T'T'Y = 59.34 315<7G 0.2663 7.00f, £3b.(70 24M 31S:.i4e .._.._-___ ---.-•.-.----- _.__.-.----.__ 78.31 ___._-_._ -....,__-_-------°--___..__... L'S 89 .i7 , i 9. 31 _.- C-'i20 _._..._.__-_ --___"'____ i.OC _""_""-_-" f3.2i ""___._._ _..'_"...._.f_X......__.._.._....__.......__ t?1--I??kSC7fr , i' ): F'-- 8. i 2 i.452 i7 A.U 3M OM 15= 5020 V- 3.74 19.31 0.0256' - 5140 003 , 1 9.;$ E ------ ---.....-----• ----._....--- F3 . A?d -_._._......._. _.......< _ C: S' r' 0 1 ?.. •m. wr. .v. 'u.• •.r- u.... n--e = e_. u_. 1 1- _u, ir'=_ n..._ u :+ n. u...r 'c n.=. x.._? u _u. u-? u ? - -- ... .. .. .. _ _ _ _ _ ,.1f:IA- SF'EF<RY H?.ADCd?JAR"iE.fiS JC]£t ?9!] 1681 DA e E 2/?OfUfs F'AG?' 8 E'f...f:ICI!?: f::Fal...CU I.?r1T'1'`P?ks??k*:k*?k?K*?K *?k*****?k**?KW?K?km**??c?k I-IySaI",Lr. f7F; C° E_CdIJTV. PI!'c. _.....__..__._ I°`Y' .._..__..__.._..-- F'i - FiEF. FLt7W UTA. f'I7TTi4G F i'C:S. F'E. s^V IYQTES F'i)IriT -- C7'T' I...CIS'S!F LE:Iy[;'?"Fir it)?. f'!= PN .._. _ . __.._..........?__ __..... - -----? ---- ----- -3.4i --- Y-?--- [?'-i:_U --__----- -------__ __ 40.00 __........?__. 9.0:a .?__..?___ -- __ . .... _._... - _ MMtaR<P;: P- 9.05 io iM2 0.00 0,00 K= 5.320 V= .76 -3.99 -i;Mi3 so.00 .-C3,k51 - ------ ---------- M'?r i:'='120 ^ ----------- 10.00 -------- 9.04 --------- - ------- 1:= 5.320 F'= 9.04 11 1,45: t1.:043 0.E30 VrL.CiC.:I'1Y = 2.34 0.08 0.005 10.00 ----------- C)39 -------- ------------- ---------------- - ------ 12. F) Fs 9. 3 A G S' 9t'v ' 12 -9•47 C=Q{'} __...__.. -------.. io,{}t'7 --....._ --_. ii..C?tY .._ _.- QMSUItM: P= 11.69 18 K452 0.00 000 K= 5.320 't' 1, 43 -------- -9.4'f-0.0066 ----------------- in.p[r ---- ------ --0,01 - ----- ---------- - --------- i£i.i4 C=420 ----- --- iL.00 ---- - - 95.6: - --- K- 5.:320 P= 4f.62 14' 1.452 0.00 0.00 k'L:.I_OC:I'T'Y = 108 -------- 8.67 --------- 00056 -------- 10.0:; --- 0..06 --- -- - ------ 8.61 --------------- ------------ ii.K ----- - - -- CE 9G --- 20 -------- -- ------.. 41.`rJ4 _---._..----- 0=9:.'.0 --..-_._.__---._._____... 91: 4.0 2:?''r'.0(7 _._-._.__...._-- _ _ _ 20..88 -_ _ _......... _ -._............_- C1=K*{QR(F't; --- ---- _ _ Pce ?0.^a6 26 1,452 :?T 9.0 2000 000 K= 0.000 V = M1 -------- 0.84 --------- U.9r,46 ------- 249.00 2G.06 ---------- - --------- 4i .34 - ------------------ ------------ 4&9/4 - --- G,S 40 27 --- O.UC C=420 __ _._.-.------ 4.09 ---_ _ Mo _ - ...,. _ QA== t)e00PT= (?,aG 4 1,452 iT 8,0 5.00 0,00 :'ELOC'L'TY = 0 nM K0000 ---------------------------------- s>.oe ---------- 0.0e ----------- -------------------------- oe0t> 0.00 f:-120 t.Oo 9 9.452 47 8,0 6.00 0:.t)G t).0000 5'.Ofi . _ _.._._...- f7 (}(7 12 a.oo cs g, 0100 CaA= 0 . OOPi= 0,00 0<p(} VEL.f7CI'T'Y = 0 S}.(1o ..._-_rJ.047 CS 92 _ -_____ _----..___.....__._..___._.-.____...__ G,0v C:::::120 f.Oo 0.00 12A= O,flOF'T= 0.00 17 !.A52 i: 20 8.0E3 MG L;ELOCTT'Y = 0 C1.4)f• !3,0t?0{i 9M 0.00 f..-...?_ __....__.__._....._._---\ :R ?? ** * ? ? * ? 7K * %K * N? * * * * * ak ? i? ?Y ? ? ? `K A? ? ? #. ? * ? ? * ? C\l`.\\7 G\i\\\7 1=' Ft [A 'B" E?' IL`. "H" 1 0 9"! 01" ?' A? 1-11 ?• !?A "9'" E ? K>E-:?XG• If"ii itxzoc Docioc itc zbc zbt:soe???zoc K 26C Noc ;PcDocDo:Doc e§c ZD: ZDezjc iK:jC DK:jc ibCsoc *0 ? [E Otr &'? R_ EE E= 3C F'r: ?T F> -t CA 1` Er [= T Im 0 N 00.. w Doc M X 9"i 6°A E.r ON F'^ d=9 W_._ x -V , MN . ? ? ? r:l ?7 ='tc 6 I a`T... -- ""' ot Es - 2 ? X ";c 4w zyc Doc :PC DIC 160 :q:;0c :0C D1k:DIcalc aqc:D*C ytc Dyt:rPc;$cD6c? zoc :fc ?? XK At Dot:x< At *0 Aw ?X?Xt?K??K##*?*?K:k*??c?kk??k?X???kskc??k*?k??K*?*?*?*:?***%?*?k??k???K?%k??K*?k**?k?K**k??k?K%?*****sk ?k C()1`1'T'FiAC;TOIi E:F§GLC 1= IfiE: PRG7'CrTIQM CUMFAMY ?k ks V4AME SFERF{Y HEAUQUAFTERS ?K ?k LQCATION 1305 GOP.PqRATE CEl47ER DIdTVE ?K ? Sl'STEPt NU. LUWCR L.EY * m t:oNreeacr ryo. 1681 ? ?K?11?XCik1K?7?:?(:?:5?*7K*?C?C?C?:?(?t*7k?K'XG;?%Y?kX<ak71?****??%K7KX?11CM(*M**?kt?C*7l?A?ak%????f3k*SKk?7k?( XC1X*?**??* E_ d•`-o Ff:Tr ll_ F_' F-_ T iR! E-__ a='" ?-?v: 0 T" ?.:.: 4.. T" 3 03 5-9 8:.: 0 .. ???*??k??*;k*#*#?*?k*****%t???k?%?*k????K?K?K??*?*?kAc*#?FM:?k**?:K*??**??K****??K?X???k%???***?s?#??kkc??K M I C^i N E-: dN F=' 0 9.,. X 0 . @"'i 9°i .. tY !5 -4 ?'?'. .7 F ? .?"'"...-!s 4dS-? 25 3 s? .?r...:a_WrW ?r..a.- csc? ?-;c.F:..::m.?:aa.-cc.x? ?asc:a.c:s::mc: c?.r. ?t-.-c•d.s ?•sc?? ?r?:«w-:?r_.-c?a.==s HYbRAULIC DESIGM IMFpkMR'TI(:1Pi SHEFT MAME SPERFCY HEADl7UARTERS DRTE 3lf 4186 LCICATION 1305 C(]F2F'PJRAT'E CEMTEf< DRIVE E+ULI_IIIMG SYSTEhf MQ, IClWE:F¢ LEY C014TRAC70R EAGLE F1fiE F'fiOTECTIDN f:[lMF'AMY CQN7RfiC7' NU. 4681 CALCULATED EtY KA7IE LETQlJkMEAU DRAWIMG h10, FP--9 OF h COIYSTRUC7IQN= ( )COMEsUSTIHLE CX?IYON-COMBUSTIIit_E CEIL.IHC; HCTGli7 NfA OCCllPANCY ST(ikAGE S 1( )MFf-fa 93 ( )L.T. HAZe ORD.NAZ.t:F', ( )4( )2( )3( )EK. HRZ. Y ! ( )MFF'A 231 ()MFF'A 235C F[6UkE GURVE S ! { )E7'T'HEfi T ! (X)SPECTFIC FULIIYG AMEF, RISK MGMTMADE EsY GREG BUSS DATE 2f6f86 E ! M !AREA pi- SPkIMKLEFi RPEFATEOIY 2000 SYSSEM TYF'E !AEMSTTY- GPM 15 (X)WET( )DRY( )DELUGEt ?F'REFiC7TqN D f AREA FER SF'kINlil»ER 130 SF'kTMKLEk Ofi NC3ZZl.E. F ! H05E ALLOIJprIf,E GF'M-IIySIUE 500 MAKE FtEL.IARL.E MQPEL. Fi S !htt]SE ALl.OWAIVGC GF'M-4UTSTAE 0 SIZE 9/2 K4AC70k 5.62 i !RACh SPRYPIKLF:k RLL.pWAIVCE 0 TEt9FEFiATU(iE kA'iING 165 G ! M ! --c??mr?r:cc.-ca??ac=acs.:ss??eeca?a?sx?sa=?ca.:?sSSZm?seassmac-aa.::????oacs???x?sF=-_:a_R CALCUl.f11'TOM ! GPM RE"LiUIfiED 332,64 f"ST. REQUTFED 99.85 AT BASC UF R%SCF; Sl3MMARY ? C FACTQR USFD: RYERNEAA 120 UMAERGRQUND 144 te-.•:c-???m =.-c^=.:::?.^c:c::?::a.::.?c:_aarcc.?':.^^xc.?: «c.-:s:::s:x? ?::a:^a?:c^.xsa«ac::??xc,x?cc_^.SC?czccmmas?.:? W!WATF_fs FLUW TEST !PUMF' DATA ! 7AIYK C3R RESERVt1Tk H!UATF.: OF 7ES7 2t6/86 !RA1'ED GA1=' 55 ! CAP. a T!7TME QF •7EST B:OOAii ! AT GPM 500 ! EL.EV, 0 E !STATIG {FSI) 71 ! F_L_EV 0 ? R !kESIDUAL (F'SI) 65 ! f WELL !f=LqW (GFM) 4382 t ! FkOCiF FLpW GPM 0 S !ELEVATION ? t pu 1- ? F• !Lacazron :1305 caRPoRATE cENrER naavE L! SOURCE UF INF(3fiMAT24N : EFlGL£& C:[TY [}F EAGAN Y ! ! COMMUDI7Y CLASS L4GAT.L(JH G 1STOfiAGE M1'. AREA AISLE WIUTH 0! STQRAGE iqETHOA: S(JL.IA PTLED `!. PAI.LETTZED Y RAGK % M ?mma.3?mac-cvxc?c?s?es?c?xwcu¢sszm?MMo?ccoc??ormxscsaaaecss:es?c:?x.:M! ! ( )SIMGLE kOW( ?Gp14VEN7IC1hAL PAI..L.k.T( )AU7UMATTC STqhAGE( )EMGAFSULATFD ! E"+ ! ( )AOI1k3LE FiOWC ?SL.AVE: F'ALI_ET( )5RL7D 5HELVTNG( )M4At-ENCAFSUI.RTEA S ! A ! ( )Ml1LTIFLE RQIJ ( )L3FGi4 T i C ! tl ! K! FLIJE Sf'AI;TPIG CL.CRRAIYCE::STqRAGE 70 CEILIIYG F ! ! LOMGITUDINAL TRAIYSVERSE A t I cW^cw:cx?x:c::::;xe.........:--cce°-:?:?:a:?r.v::r?.?c?.-.::?.-?.-c:?c.:awr.?:::«.s:•?;e=c::.::?c?x?c?n?::_r.? G ! ! NORTZONfTAL Bfif.fiIEkS PfaOVIllED: E i t tJNITS -- DTAME7Ek ( I14CH) L.ENGTH (FpOT) FLUL1 (GI'Pi) F'kESSUftE (FSI) ?A?K?*'?CiK?'*`I?#?***:X?*?k%?*X?Y?***3kk:#*?*kc:k%t*%K*:k*?k***?k******%C?t*%KX:?%*Vt:?%kNck(**k:A?s#??W.?X7??1#W%???Yc " F' :E IF'x E: F• 174' 0 "6"' C- 0 -6- 1 0 ]EK 'Y' F,- 0 M F° 9.3 1' q=_ R $_? EE S' 7L" (!? B"4 *cW?W*C*r F7-a?C;-L_E:_ F"XFa,E? E?0s *C *C *C w w w. JQH- SF'EF<RY FdEAACUAfi7'EfiS JRB !4Q 7681 DATE 3/f9/B6 F'AGE t %ckc**************************RkAIVCM LINE CA LCULATTOM********sK****k?****Xskc****Xc*** :c .r_r'.:: r. e: .? • :c _ .m ? -: . c? « xsa .- c x : ::? ? .+ 1 ^ ? + AM . LI.en f') 1 D11 ? 4i ° t. y C 1 f 11f 6. QV ., e !- o1I"? E 1""! f 1 REF. FLOW DZA. FIT7IMG FTGS. P"'c: F'V NQTES F'DINT OT LOSSIF L.F,Ni:,7HS TO1'. F'F PiV .-=: =W = =.-c: ?:::- -ac _•? _.•?W ?_ ?:z.-?::??:.:•??::c:cdi:xr....._-: ?.a:e: :?r.?W :::x:---:.::?•_?:: ??.»_c:.-c-^n---rs?r_c:ecti?csc= s.a: 94.87 1,104 oE :.a 3.e3 7.00 Q=n*s0a(P):P= 7 i C=520 iT 4.0 4.49 0.00 K-.: 5.620 V= 4,48 14,87 0.0586 7,83 O.45 44.8% -- ------- ,...__ ______._._.. ._.___7.4b -- --__V. wlCH?1- 5.440 ^ ••? ?. ^- _ _ _ 5A.79 1.104 C)E 2.4 9.00 r.39,C3=h*SC7P?(f-')?P= 7.39?T 2 C=120 1T 4.0 4,00 MO K= 5.440 V4.957 14.79 Q.4580 73.00 0.75 ___ ____._...._._____.____.__---_____.__________.__.-------•--__.___________ 1 4. 79 8. 14 K 2= 5.180 3 CD.. WI: W*CWWW ,JilEs- SF'ERkY HERBt7UARTERS ,1OR NO 1681 DATE 3/1 9/Ss5 F'AGG 3 26.27 9.92 48.24 5>:7??» » 2?)??3CtCC4CCC?5CCC{4CfCC7 6 8.08 28.19 48.24 9.?i 26.75 46.77 35.34 9»7>:?»7>44C.CCi 7C{Ct2C<:(43?'CC14 i5?3?>?>7J:}7:}»??>?a?3?3?3??»ih 8.32 46.7? 3.38 42,67 9,79 47Ct<MCf1aC.CC19CCC.20Ct<:21 22CCt.23t.CCCCCCCCCCCLCCCCCtC£tCtCCCC24 '?2,Rb 42,67 9.79 r?S ?6tCCCCCCCCCCC{LCCCC{CiCCCC{CCCCtccccc<ccccccctcccceecc?7 31.80 28 37 ? 97.09 h 29 30 n A 235.55 65.68 A A 31 32 A +''..V6.9F h 2)ryO.$J ?33CCC?CCCCCCCtCCCCC{CCCCtCCt<LCCfCC:fCCCCCCtCf{LL{tCLCCCCCCCCCCtC34 V 33.79 33.79 V ;3?tCCCfCCCCCCCtCCCfCLfCCCCt<ft?C{tC?C<CCCtiCLttCtC<CCC<{CS.C?<CLCCC36 ??? Ac Xc ? ????I UZ F :x: R 1E.' r=•R 0 T°E:er?r-1: IF-W u4 CQ _ =????W Xc JOR- SF'ER F;Y HEAAQUAkTEFS JQEs MO 9 684 DA7E 3f f 9lB6 F•A6E 4 #**Xc:%********kC***kc*****LQWER LEVEL CAL.GULATIQM**************:K************* ?..????C?....n .'..".?:6?:0.'f5?94L:.^+r41'?..•5.59^CF:'.."1_^.^..f' °JpF'..'{ 4.?.:'i=.'...'."t..'C.?'...'^n ^..f`wITC??:??^..^.B'F..^..i^.'r^..`..a :WYY.W.."5??.'^...w?:'..JS.^"w.`..5.?..+`-.:.^...w :'L I PLC:, LQ I FITITIN E F W R. D G FTGS. PE F'V NOTES Xc%caX?c?K F'OTI`1T QT LQSS/F LEIYGTHS TqT. F'F" RM -9.92 G=12ii 52.00 11.28 Q=K*S@ft(P) : F'= 11.28 A 1.144 0.00 O.QO K= 5.440 V= 3.32 -9.92'0..0277 . 12.00 "'0a33 1 8. 00 C= 9 2(] . _ .._12.0(? _ ___.9 0.45 K=Y 5.440 YF'=? S 0. 95? 3 1.104 0.00 O.GTR VELOCITY = 2.71 s3.Of3 U.0989 52.49 0.23 3$.iq C=120 _ 3.00 Y _ i4.i8 lim 5.440 F= it.iS 2 1.304 S7 4.0 4,09 0.00 VELOCITY = 8.8 26.27 0. 1680 __ _ 7140 1.18 98..29 C=120 __ --4.?0 _ 5 ___i2.35 .._ ___.____K----Y5.ISO YV= W92.3S~ 5 1.687 p.00 0.00 VELOCITY = 6.38 44.48 fi.4564 __.. .__ 70,o4 0.56 47.4d C=i2f? .?__ __76.Q0 ___.1:.92 __ _______?Y: -._-3.i84 P=~12.$2- $ 1.687 0.00 0,40 VELOCITY = 13.43 95.50 0.2193 90.9D 2.14 55.4i C- 5 2U _ 10,00 ?.._ 95.06 K= 5> f 8p F'= 15.06 15 1.6$7 d.OB 0.00 VELOCITY = 21.0$ 145.9ti (}.5347 _ _._- - 10.00 5.55 _ _ __ _ 93«49 C-•120 -____ __ _.____-- io,00 _------____ 20.21 _______ __ __ _ K= 5.58(} F= 20.21 22 1<b87 o.00 0.00 VELOCITY - 23.af 160.40 O.bUS& 10.00 6.06 -34.79 r?:i20 -_ _ __?U.4?_ ___2?N•?7 _ .. ---- QA= -3i.79P7= 26.27 26 4.687 0,00 0.00 VELOCITY - f8.45 128.63 0,4024 ioaOG 4.02 -31 .52 C=f 2O ____. ________ S O.dO _._.______.__ 30.29 _..____---.._..__ QA= -34 .5.7.F'T= 30.24 28 1.687 9.U9 o,04 VELOCITY -• 1:3.93 97.09 0, <'392 _ _ _ i 0.00 4.39 _•a1.49 _ C=:f2(7 _ _____.__ ___m____ 1[7.44 ____`-.____ ,?` .68 _____.. QA= -31,41PT= 32.$8 SO 1.687 0.00 0.00 VELOCITY = 9.42 65.68 0.1f6t7 - 40a00 4.h6 --3i .8?r C-1:?0 .. y_?.. -._ .._10.96 33.85 QA=-3t .84F'T=_.33.85 32 1.687 0,40 0,04 VELOCITY = 4.85 33.79 0.0339 i 0. 00 O. 3+s 33.79 34.19 CS?97 35 --------- ---------- Olp4 -------- 0=420 --- ______ 1E 2.0 ____._.___ ii39.OG __________ 34.14 __. ____... ______ _ ?. OA- O.OOF'T= 34.94 35 1.194 27 4.4 10100 o.6}0 VELOCITY = if,32 33.79 0.2877 49,?.Dtl 53.27 F' l: F'i EE- 600m voc a6c PIC PIC myNC J4H- SF'ER RY b{EAllClUAkl'EfiS JaH ND 5 d8i T}ATF_ 30y/86 F'AGE 5 L.EVE:I.. _ __._??:,_? ????:???•?_?:__???:?w?4W???? ???? _??.? ?.==??M _ =w= - :?__??:-_ W? ??: ? NYDRLG. O6i. °C" F'C7ll7V, F'TF'E F'T i''T REF. PLOW FiA. P TTTIHG F7GS. F'C: F'V PIOTES F°qINT OT LC3S'S/I' LE04G7}9S 1'qT, I=F FN =:?? : _?.??_ .? -?.???____._» ?? :.-,-??_-? W ? ??:.::-= ?_ ---_r_-_?:? W- __. ?--_-•=?,? :a???z?;:?????:-.?r-??= 47, 0(7 C==i 20 300 87.46 GA= 00Of'T- 87.46 36 :.fSA 0,00 009 VELOCITY 2.97 M79 0.05 ()3 3.50 0. Q4 33.79 _.____ .__-_.___-_. _.__.-.. -__ _._.___-____ 87.50 ________...._„._-__________.__..__ (:S s£i 34 _'.?'C?.4R C::='f20 _. ___.. 3.04 __ .__ .-__ 5?'.5?w -______________-,._.___-__.%_....` CiA- _,2£?a40F'T_.: fA.9 6 i. i f}A 17 00 4.00 0.00 VELOCITY = 9.59 -28.40-0.1441 ,. -_ 7.00 ___..___ - -1.36 -. .___ - ,.- . - -- ___ Sf,49 C=i20 -_ 1.?.(30 . - - .. _ ti..'>f.r - ^ ____._.-c_-_._.__i ____.,__. h= 5.440 P" 9906 9 S.104 0.00 0.00 VELOCITY = 3.32 -9.95--00276 92<QU -•0.33 i t3.2?i G-f<?0 ____ _-- 2.44 - 4 - 1 i.<? __ - ___.__.e _.?- - -5.440 Tw'= 11,23 10 1.104 0.00 0.00 VELOCITY ? 2.79 --------- 80:2 -------- 040200 -------- ------ 14.OU - - 0.24 - -- -- - ------ - 4 8. 43 C==S 24 --- - ----- 12.00 --- - --- 11.47 ------- ---- -- - ---- K== 5. 440 F'= 11.47 11 1.104 {)00 0.04 VELOCITY = 8M --------- 26,75 -------- 0.1737 -------- --------- 1200 ------ 2.[a8 - -- ------ ----------------- - ',?0.0? t:420 -- 1=.00 ---- --- 13.55 - -- - K= 5.$40 F'= 43.55 i= f.144 4.40 0.00 VELOCITY = 15.67 46.77 0,4$E35 52.pC1 5.96 (?.C10 t.=42(} 2E 2.(3 _ 84,0Q? _ ? f5',?i? ? QA= O.OOPT= 19M 93 9.104 1T 40 8.00 O.Ot? VELOCITY = 15.67 46.77 Uh48titi MfYo 43.48 4b477 Y 62.84 CS 98 14 -?a`?.3L? C:-120 - 3.aC1 t5.,,?pd__ ___.- _CdA- -35.30F'T= 15.46 15 . i.i04 1T 4.0 4104 000 VELOCITY = 47.fi3 -M30-0.2903 _ 7100 -2.03 _ __ w___ _ . __ _;55.34 ____ __.____.___ .-__ _ ____ 53.03 __ _____ _ __ G.S 98 16 --------- -------- i5'.bS -------- C.;==i;?t) --------- -------- 12.09 ---------- 13.03 -------------------------- K= 5.440 f'- 13,03 16 iM4 4.40 0. oQ VELOCITY = 505 45.67-0.0645 i"•_'..00 -0.78 f S'. U5 C020 72.00 92.26 _ Ic= 5.449 F'= 1206 17 1.104 000 0.00 VELOCITY = 1.13 3.38 0.0037 t<. 06 0.05 :?????w EE A r? a- c v- ????E? F? F;r D "r-FMC? r :1 0 r4 c.0 _ * W. *C;x :aC *C Jf1R- SF'EkfiY kEfiPRUARTEkS JOEt hiQ 16E31 UATE 3l19/86 F'AGE: b LEVEL.. CALCULATId 1Y***k:??**********???********* MYDfiLC. idA °C" 6ldi.lIV. F'IF'E F'7 F'7 ftEF, FLOW FIA, FITTING FTGS. F'E FV hlqTES F'DIMT CdT LU55/i= LF_NGTHS TQT. F'F F'N 19l08 C==420 12.04 12.30 P;=+ 5.440 F= 12.30 18 1.104 O.L10 0.00 VEL.OGT7Y = 7.52 22.46 U.1257 __ __ 92.00 1.55 i0.ti C=720 _ M --?.00 __ 5 -.. 43.81 W.__-__h`.5.440VP=-13.8f^ 19 1.904 0.00 0,40 VELOCTTY ? 94.3 42.67 0.4i22 12.00 4.95 O.0O G=12Q 3C 2.0 90,00 +Ei.%b XY ClA= 0.40P7= 18.76 20 i<i44 fT 4.0 10.00 0.00 4'E4QCITY = 14.3 42.67 0.4922 - - 908.00 44:52 ?b2.67 - -- ----------- -- ..___-•--- ___?.".._. 6.. 8 ?..__________________..________ CS 99 21 4',75' __ _ C=420 __w______ _________ 3.40 _--'__'_ <_Qa?.1 __-°--.____=__..________ . C!-IC*S[2R(F'): p-° 20.21 22 1.104 1T 4,0 4,00 A,C1O Kau 0.000 V= 3.28 9.79 0.0270 7.00 __ 0.19 _ _ ____ - 0.00 ?:=?4w? 3:3.00 2A.At) r_____ _QAy O.OOFT? 20.40 23 4.f(?4 4.00 A.e0 VELOGITY ? 3.28 ---- .. -.^ 9.79 _.._ . 0.0270 i:?.QO 0.:32 ._ --_ 24.76 .....__-_-e- C=129 e--_.-._._-- 6E `d.0 __._._._.-...._- 541.00 _m___.-«. 20.72 _...-_-...._.r_"'_.'__-._--_.-...,..?_.?«.....ry.. . K= 5.446 P?0.3.. 24 4.104 fT 4.0 95.00 0.00 VE:I.t3CI7Y ? 15.58 34.55 0.2790 _ 1S7>00 43e80 _ 3?a.5s ____.__ _________ __6?.;3 ___C` .99 25 3i.630 C=120 3E 2,0 - i4t7.?D0 26.27 T ~ __ --_ G-It?KS@R(P)_..F'= X2b.27 26 1.104 2T 4.0 54.00 4.00 K= 0.000 V= 70.65 39.80 _ 0,2392 _.. ... _ 174.00 41.62 31.[iSD , __..._____ ____..____ ____.___ 67,89 __________________________. GS 99 27 ^ 35.5f _??fry?__ ._'E T .... :?.U w _ 46:?.04 - __?4.:'9 . ....,_____..__?A?. _...._31e51FT- 30.29 28 M1.5O4 2T 4.0 10.00 0.00 VELOCT7Y = 1no5b 31.51 0.2353 172.00 40.47 31.54 70.77 CSi4f' 29 35.42 ^ C=42Q - ~fE v2.U YT 17?'..4p --. .__3;?,b£3 --.____.___?A?__._39.42F'T= N32.h8 30 7.304 2T 4.0 10.44 0.00 VE:L4GI"f'Y = 9t?,53 35.42 0.2339 182.00 42.58 WWWWWW IC: AU1IL. E'. 8'-- IRIE: 6'--• RE.b "9- ? EC ..E'- I OPti 00_ *C*c *CW*CW JQF- SF'ERkY HEADQ UARTEkS JDfs MQ 1681 DATE 31 i 9/Bb F'AGL ? LEVF_L. C!-1LCULA77UI4 M:K%??**Mt***kc****kc******#**Xt** ?:-??? :_?__?_?-T?? --_____.?•_: -?z?R-•-- ---?:.?????w_,: -_._- .•:?.-wW ?s====== .-?=??W?: =?:???:_?: HYDRLC. C1A °l," ELZIJZV. F'TF'E F'T PT REF. FLOW AIA. FITTING F7GS. PE F'V 140TES ****?K F'OiIYT CdT LpSSlF LEINf>'i'HS TU7, f'F" PM 3t ,42 75.27 CS100 31 3t .8fl G=120 1 E 2.0 M.00 33.85 ^ QA- 35 .88f'T== 33.85 M ^ 32 9.104 2T 4.0 f0.00 0,00 VELOCITY - f0.68 35.88 -------- 0.2404 ------- ------- - f83.00 45,20 35,Et8 - - ----- 74.05 GS40G 33 28.19 C=120 _ .._ _______. 12.04 .____..----- 17.2$ ---•----------___------------ qfl- 2$.S4F'T= i5.28 4 5.144 0.04 0.0o VELOCITY ? 9.44 28.19 0.1914 _ 92.00 2.30 2U. Q:S __ C-i <?0 _______ 12. OQ 13.58 K= 5.440 F= 13.58 5 f.i04 9.00 4s00 VELOCITY ? 16,16 48.24 -------- 0.5471 ------- ---------- 52,00 --------- 6.21 -------- ------------- (3.00 f-12Q 3E 2.O 73.00 19.79 ClA= O.OOF7= 19.79 b 1,304 iT 4.0 10.00 0.00 VELOCITY = 16,16 48.24 0.5171 f33.00 _ ' 42.93 _ _ _ _ 0.0(? C=42(} 9.pU_. _-6=.?.71 QA= O.OOPT= 82.71 7 2.154 0100 0.00 VELOCITY = 4.25 46.24 0.0199 9. 00 0. 3a 46,77 G= 4:?'p _ __ _......_.___-- 5.50 ---..____.__ 6<.?39 ____._ ? (?A= 46.?7("T°? 62.89 14 :.154 0.00 0.00 VF_LUGI'T'Y = 8a36 95.01 0.0694 5.50 0.38 _ _____ __...__---- ----- ?+'.'..6: C•?120 9<00 _ b3.2£3 i _ C7A- 4' .67F'T= 63.28 21 2.159 0.00 o.QO VELOCITY = 12.42 437.68 O.1386 9.00 1.45 .______.__.- ______--- 34.56 ------ C=120 ------.__- 56.04 64.53 LaA= 34.56PT= 64.53 25 2.154 01114 0. -D0 VELOCITY - 15.16 --------- 172,24 --------- 0.210l -- - 16.00 :3.36 _ ., 31.%5' - --- C=120 ----------- ------- .___ f0.00 _-. 67.89 T t7fa 31.79F7N - 67.89 27 2. 9 54 O. 00 0100 VELOCITY = 1 7. 96 204.03 0.2875 -- ----------- 1Q.00 --------- 2,88 --------- ---------------------- ------ 35.52 G=120 12.00 70.77 Qfi= 31.5-2FT= 70.77 29 2.154 0.00 0.00 VELOCITY = 20.73 235.55 0.3750 12.00 4.50 _ 31 .44 t:-1 :?0 8.00 75..,27 . ClA= 31.41 f''i= 75.27 31 2.154 0.00 0.00 VELOCITY = 23.49 266.96 O.4728 8.00 3.78 AcDlx:?W*c;a< F:11:4"EZ F°FwO°FEEUI-XLr-x COd xx?4cww*r JCaEs-- SF'EkFtY HERDC7 UAfr'TEF+S JOb i`4D 1685 llA TE 3/14i8fi FAGE 8 LEVEL CA LCULATION**Xt.yc*kC **Xc**%c*;kkC*****:K******* ? W v ' HYI3f2LC. CIA "C.° C171.17V, PZPE F'T P7 REF. FLOW I?IA. FI'TTIhIG FTGS. F'E I"V %??X*** NOTE.S F•'OTMT @Y LUSS/C" L.EI4G"T'IiS 707a PF f'IV 31.89 C=124 4.50 ? 79.0.., QA= 31 . B9P'T= 79.05 33 2,f54 i7t0.0 50.00 0,00 VELOCTTY = 26.3 298.!?5 0.5$25 f 4a?G 0.45 ?9a.8? _ ___ ___ __-87.Sn - CS10t 34 ----------------- 3{.?9 ------- C=126 ---------- 4E 6.0 -------- iE3.04 ------------------ 87.50 -------------------------- Qr1== 33.79F'T- 87.50 34 2.581 24.00 0.40 VC.LOGITY = 20.39 332.64 0.2943 _ . .. . 42.00 12.36 . __ __ __ 3:32. 64 _ _ __ _,.___ _._.._.___... __._.__•---. . _.__ 49.86 CSf 02 37 ? W og ? :?( yY ik k` %A ? k # 4 k :P :K i( C \'. \!', J E\4\\\7 ? .. y T° $. F"w. r_- F' F+e: 0 .`Q`. 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Wl?.'u`:^:G:ti:.1]RSC.T.OC `F.;I:ETS^w'.-".Ci.'S.'L"dL::"3 0.+90 t,4E74 1,.00 Z97 QA= +:'?.i5 ?t 92Q.GpSM a Moo 0.00 0.00 K= 5000 v;.. 6.03 _ , ,. Moo K`lfh9 iM 0.12 h_ .........._ - ._.___.,.. ? F?, e?u __..._._.r_.,.. .__..__.__„.._.,._ .._-_____ .__-_.-_....,.- i G.?79 _......-.._,w_ __.__._.__...-_ _.?..._ h; 2?}= 5.670 7 1?3.?? ir4(S?S _ _ _5.{10 .- _,.?t.i.?4? M_ __ @A? -U.i? X 9:?r?Cit?Si?,°'. :7 I'rn07 %00 17.{)O K?" '?.'!C?4} V - h.:..?.8 i6:,75 0.0900 . __ ..,.___ 500 ._..-_... 01(Yc _ _____ .... ._.,. ._ .. . .. 1?:?_ ___ ....-4v".4i_ .... . 'j..eM.7..- ? . ...._ _'.«?il :d ir'a.:=G y.i?J4 _ ._ _-_.- __ _. 1.'_ ---€i.?? _- _.?_._e?..._ CdA-? M ?DK#?= ?:M•i9i>>40WC?F.. 5 L'==12'?!' 0>C07 Lail0 h= .?'30FT.0 'd ,.5.53 1e,50 0.07iO 4,OG _ 0.07 ..__ ., . i?4.?F? _ ?t.4t .. 1? w;:a s.b$4? _. 6 ?o,{?i';1 '?.'{Q1b !''J?, Y.?4 ?~..x.e??t -.. .._.._...?':?iJ' ....a. .-......<._. ....._. .?MS= ^Qy.??i -? 'd M'ItiG}.?;Q0wfiOF: 6 t:M00 !1' 20 7485 !l.tl(y PC- .""7,."00 1i :., fa.J;3 Me7t;t L<iM 75.85 4,M 1. &? 9.1QA _ 3?b?.??{) ? _ 4ia82 4142 k;:m 1«G80 Wtin 10.$0 +y G0f?'?) Ma 4.00 1.02 VELOCSTY a 12.28 36.,6' oM63 1200 5.24 iU.F30 ? :7.C1 4,44R C?E 9<4 4'_.,_ M ...'_i?.Jt, i7.tia 1.680 P- 14.,48 h= b Ca?iOr•? iT ?.'.0 :05 000 2.38 VE.LaCT7'Y' .. i r.5. 5ci <?8 i.0212 1705 9 F:1, 3'_5 14.46 ?:Un ?',S?3i -3?p()--_ _.",5`},':5~ 3 _ ?.?}9 . 1(-<._ 0.0470 P= 3502 ? M%3 :?.o47 0.00 %Qq 3d1ELOCIT'Y :.. 3.01 IS.2i: 0.0164 .. .. .. . ___ •4000 C3.5ft 35.32 _ "S?..e ? ?.?1, .. . _..? ._.. _.'ffr.{)C' .._ ?__ ?.._3:>.-,^? ..,.'- r? h;= _- '?.?9C -F's.. ._±5,.^_u 8 ?mito 000 Kqo Q>34 '1E&OCTT'r a 7,13 ---------- 'ItiCi.39 ------- 0.0591 ------- ----------- 90.00 -------- .f'A.,.'?'sF' --------- sJ.r?'-s ---- -- --------------------- i96«;39 36.'ib - K 23= 19060 it 48.OO i.04 f'vL. i.4..... 1:4.iyo_....___9_9OA= 0.11 Y 1».'+:i.00SM t.`:s: 5OO 9 T 20 205 0M.) 'tl*x 5 MU V += Pi . 13 1£?z[3{7 ?'n9?6r?' `15a65 Yao,.? °c:^ ?:? L•c aasa::??a:tr?:. r?au?.:c;.?:u: ?::a:c;.-exE -e-.nma:ui :-.: r_•e-.?s?.:.::usaze:;s:+::c.Yx.:.s:? w-:•:?e:?_m.:?,^ mt:::na»:atia:::x .•::.::::c:x.a rv?dx; ;?r.u?).tix:;:a ?W'? . flti• A'M? 1`If +m^? P? p°.. G'?"W Y.3' H_ w?:. F..ciR. [F- v4`ir v W °C'• W, W. .soB- .??ERRr HEAr, taUARzERs , .±OD rea r6ni 9Ar E 1/16186 PAr:c 3 t_EV `: ti?:St:S R114M1 J:Z:6`.. :C `1] `.? G.". YI J'S 6'C.'S. :F ? w CS _°.'I..'°.' ."`..9:S:G'.tl: i.R:S M1: P: ?L T' A '.^.f :Y C. ti ml L:.'9.' :L' I'..'I:Y ? 4: iP:'i: 6'.:^}?.:"....' {fA T.'. i i Lt ?.i 5:.^.M CSd2^'..^ii i'^L'll.T.:05 ti:T «^•••3n a_.:3 J:: e. ..µ N'fllF.k,,C, C2A DZr,. EE3€JTv. i''TF•e: P7 F'T' fi€L'F. Ft_OW "C° F'TITSIVv F'i'GS. PE F'ts ^iOT FS 17M F'17iNT t? t i„+7v S%F 1eEP9G'fHS TM F'F i'Il :>.:'?".<IC•STJ:Y.?CC.:.••••..?..::.1,::«'S? Mt:«?_2.'"]IN.n.i x'. L^:':::"'d5;lm"JXS^=:!.5A`?19 :.^..'.:S.a:4`JCSst1 C3^IC????3r^. °w^..°.°wlSS$if3..°Y.:S :C:GS;.^'.:«{.L:.'lP:: ?:^.M1:nII °Y'?^•1i3.:':i:.TlG»'J,'r.^+: 11.,6=: W04 42.,t3ci 11.27 ii.82 h= 5<6?0 Pm 1000 [Z40Ea 0.00 !)0?'J K02 VELOCITY iw.27 ;?f<[a3 144354 _ _ , i?,L!C? 1,23 1oeBks e'.Ya5Gf iof?4 _ OE 1.ar _..._.-__._ 9s,a(} _.__._.____ 1705 ___....._...._m 'Iy.i.7f. _..._-_.,w.._....,_ Kax 5:.670 __.-_._._._-_.. Pr•: 1046 »b i.'.o1Oc) iT 2,8 2101 o,,)' 47 ?i?..'/"' 'vE.l.l`iC;.;T"f ... 59.10 ?Gi.z'.? i..ti.Y4?+4a? ?iln?`:?,r?,' -y iti..:!'t W48 58.:i ... --............. e» ... e.. -- ....--«-...,... ..» --...Y..........- 1y..,??• ......-....._........... .......... -....--....,?.._ t?; 2?r- . ... .??,,, _e_...?._.? 2 if;:t}G f.iC??t? ..,,........ s ............-.......,...._ 3 E i.+? -..........-.... - w.0?J _e..e w. r... e..... 9?'r'? «...........-....r.« .w _..,..............-- n.. . P....... f?A? Q.1a Yti ....??............? ? ?. ?..w 9?4F.S}J.?" i 3F« 6 C^?iri.y0 ? {r Y ....a3 "..?wf3 {?nk,'en! it`'? :}.:'{5r? + r }? ;. el?r?.J . 9 ci . Ot:+ 0J169 . _ .._ ; x 28 o. cs xi 0e00 1.104 .__._._.. 4F 1<r1 ........_,._.,,.._ ,.U(, M._..,'-'._... itt.£PeZ _...__.._.__... #fi+.$y' ..._._,..__.._...-..... t;:- 0000 _.,..._.._....,.,.._._... P- g+r."i? " l:='140 1T 20 2=03 t).ra?'s 0.25 VELOCITY - 6,03 %00 Gj.4489 _ _ 6185 000 9007 1E?>oi7 ._ -_____e- __,.........__... •i4.6:: __.._.___.._. __.__..-,._..._..- t=: 25- 50 -,_.d_...._,.._.._._ 8n ip _ 1F+.4t3 -., __- 1.W -.....____.-__-_.„, O". 1.4 ._w_._, -_w SWUo _.___._.-_ 9r;.42 _..__.._.-_ __._-.._.__M_-. I+:WC#R(F')a _-_......_,..._..__ n.95'eia''000 Gzif!(•} iT .?,23 ::'.?73 e'3.t}G K'?» `?..t'Ji•} f''Ta 5,skAa 5t9.40 0.,4?4C? _ _ . . t5a0)S 3>4a ifiM i,t04 -. _ ._-..-..,..... ......-__._.._ 94=.00 -..__._._.., t2_35 ._.,...__-W.- 12.35 w__-__.__-___. iti= 5.fi8O _--___..__._. F`-: 11.24 C-ii)f o>t)4 0.00 3?05 t1EL»CirI7'Y m 32.55 37.4s f?M4Y . i;S.00 405 54.25e 12e?3 1,432 .w,?. fE 20 ...300 15,.9t0 ?.._i6n90 ?h6.._._5.6£10 ?F?4_._.45.9E' 6 r=00 f T 5.7 3:55 0.00 0.9" «'L,L.QC:1T`f ? 11,65 60.20 0..?8?4 . ,. .- , 91.51 3.3: i`.i0C? 22..0 1.452 _._ __,_. __.. -,_..,.,-._, ;:.s.ov -.....-_.__ 20n<r2 _._-_...__.. 20.22 _,.._....,.._......._ r.- 5a200 ...._.-_..._-m. rz iS.46 C=a400 o.•J() 0.00 3,74 1fE:i..C.1CIT'Y EW0`S 8200 0.5196 42.(}0 021 if.3.'?-S?i • _ <:F:??a _... 4.b6?_ _..,_?.a..___.._......... .f2.(?S? -_. .._.,.w'd.rrr`r «_.T;''cs.?k?? _.?»_.._.?.Ez?3ty _.?r, .....r?,. ?? 4 MOs? o..of3 onC7o iM VELOCITY ? 95.94, 44i.i5 iiMO!''L _ _ _ _ _ i2.0ir :+.t'>" 24.74 . ;?'i.3`_; . ?.454 _. __ .??.W 4?' ... :.'s.,_ _.,.?1.b;:i _..?_?i.?? .. .?-., .._ 5.?afe"? _f??,....?^a-p 2 Wc?G aa57 a,?.0{7 i.,ti6 VELOCITY = 1204 142,50 0.2473 . . . _ 3Cr..?'?7 !r a:y/S 30,57 iia.`_S`.? 2.589 . .. _- _._.._...-- f'J.,00 _-_._.__._ 37.97 ___,_,..-__. 37,97 .._....w..___-_-. n- 19060 .,-__....__,,...._ P"' Z607 4i i«000 cNO 00+3 1.70 VELOCITY m ?,?'r0L 2W09 0.25?77 10.,00 2_60 36.27 ?c=aW:? rsr?zs:ra ?;:rn's:sr?s:,?: caidv?m? ?.? :?-.:umia¢cr?x:xozxx:xac ?svm?:?rs:s ?:?m-e^W:aex ?x?s??x:i_ r.;:d::xa:w?:anraun;v:::secoa.r,..n?tzJS:a.^.ni:am AKAKWAMW M?h` clu?: F'-Zr? E= F`- D.r WWW: ? WW, ,.FiJE:-- SF'EFif'c'"Y h1C€tli1.?1JAF•' i EF{.4' _EOfi' k°!?:t 9 e?tft'S IYATE 3s''16fS:3t4 Pt#C*G R LEV ?+??.r.ra:::mxasaaa?:?:n-xs?»?ca::?s:?ne? ??en.saexa:??:aes ;ar•r.nsiMacacmar.e::g'+:cnw ;?TUrpa:r»s+:e..:a:ryaa:?uce???w.nr,:: m??.?:.a:q??sa?.rs Hl'DFt!_t:: . Pr't T3Za. EpUliJn PTFk F''#" F'1' REF, FI.C)W 'G° F"I1"T.T.Pi1:, F7G5, F'C FV NO7E S POT.MT OT L OSSJF l..ENGTH: T07. PF F'Pl .M: ::?. .'tst Ma:SUm r> .c s:t.`.: a:s;9ra:¢a::au.^.S a?ars ?x?sxm?¢Sm;.?axsceC:f?[ Wt.r.,?7rt:a:.^.?1::?.wYaSCtcc.:.>^. G"Cu?u 9c s'x dBSaC F::art!u,r.::z v:a.".Str» „1:c::c. xm: 9i5M 20$9 OE 4.2 5100 40.57 40,57 Pv 95MO F', 37.02 i2 r:-+'tt}Q i7 80 0,:56 0400 505 VELOCITY ? 2::03 37409 M425 . ... 13.56 6e9„?'i 3702 a?'t,t. ..'1?j _._. ......_......__..W ...... ?a ._ .l)t'i _ ............ .. 'QI•?? ., .??-... S?e?g? N t'x? ? 4208 14 C000 0,00 0.40 504 VELOCITY a 27,52 445.72 MaW . . KOc, _ M; _- ., _. 42M W .,_ _ f?.?Ct :??b;`_Y w:si.U? 4i3. .>'? ?t?.:? , ,? . 0WQ0 K 4':.59 20 !"-4oo 0&0 000 4.64 VELOCITY ? 26.21 445.:72 0.6437 . _ _ 31.00 aT.86 43.59 Q.0{a 3.260 _._- , -__.,_a ZE 4,.9 _...-..w_.._. 1f.00 .. _,_..m.s_. _.._._.. 6009 _..__....,___ 68.09 -.._ _.._.._.,_..... ICm tix000 __._....r_.-._ F'= 66.ii 15 L:ry3Ql? 1407 0.00 1.98 VEI.CJCT7°f 97392 445,72 fr."?:??:a 10.97 7.09 b6Rii 445.;?2?___._ ..._..,.._._,....?».._.., _.__._._....._. .iw?..».».___ _?? _ i?,-???_.._5f.?i2Fi___..._..,.» 16 r- - . ., i??.Of? S.1(?4 <?E 1.?t Y - i';;•.b(# ^ 9.97 _,? _?.. „? A?? 0.45 :a µ N ti 2U0GiSCdF. 6 l_??IO0 fT ,"?i,,k 205 0.00 K.= 5e7r'J0 V ry' 6.03 ls.r.?c? f,.IM _... M.85 i:.p:'' ?£i.?;? 9.9A4 ..M :E.. 5.?4 -S:MdC' _- .....i i>--__. .f f.F?<"j _ i??-_-a.??? - t='ra ._W8^ ,n C0(}r.) 2.86 004 s.:f?:? 4'E:LOC:['fY 52.28 36.67 0aH31a3 . ,__ 1406 _ . 6.48 if7.810:= 2w.fyi 1.?'?2 ,.. . t'?^.fr?J__ ,_._ iz?t'r WN _i#.?y3(} Y hT? - `?.?58Cs '?._-57.3ES 6 C-ioG 0.00 Kt3O 0.92 VELOCITY - 99,.68 ea+J.;?:s 0:2SOf4 ,._..___ 12..00 311? 17.3E+ 2Z.34 c.?A5:.' . _._ °i'?..??.?3Cry_ _1.7t.7`? w:*f.7p.. .??..,..._?,6£3{??. ?T?...??n-3 ? G+900 M+3 0400 iM VELOCITY ? 16.59 05.69 00524 12.00 c4aLw1 1§'121 290: 4,.687 ,..._.__......_ ...12M00 28.40 2E900 µ K=.670 W. F+m_.26.56 -.' W00 t?.t?{} 000 i04 +PE;4.CSGITY = 16,48 i taa.9i 044578 ia?.UG 5.49 26r5cr xV?? V M'?.atW+^P ... f?}?' ^F ?5'? .? n ? }e4°.....? ..V..... ..e r]?..`?F4.]'(?'??n.. a'??.?)dSJ;1'. .„??....?.ri.`r?nV'V?ie' .. C !-;??.r.w..TtiJ4 a.`a 92 r=t i 7 0 3T 74i 7,j3 }.C t G s?.s' L•'EL.L3CT7Y 901i9 /('{q .{{ i S"HeT 1 [ ? Va5 1Wti?i. Laa?? y ? p MiV:.{ W20 W.5'1 .z.. .=........ -..--- ....n -.n.....'-_.. ?6>9`' ;.-.e.........._... ..»-..._....«.,.-..........»..........n»..-......-. K 27= 48.900 17 ------- ---------- Wa00 ------- 1e104 ---- .......----a.. uE 1.4 ......,...--.......... t3.00 ........-_....., -... r.... 9a9'r ...... _r....... «, m -......»--..... :. YM1... -.... OA- n,e., X .... -.... r. __-q....... 120.00aGlF. 6 rv.i00 F'T :48 N,.?5 t:?.i }f? l?:= 5,?r?ty ,? =? ,5.?).3 ' t? ?ReOf? ?±. V.L?i?tJTY ?, { I??,(??G% .[.I ?y 1r.45 :EfSI:::::.^.(}ILLCY.1.::,.^.n`uru:3.T.'a?w.'?.?CLNFT.:3'.li'iC1 G[Sr:C:^J.'.CR.^'rfA$9.^?.' :?^_5«^.:f.^J41i.:Uf:.?..3'n'rLGIt+.Vmit'e<'C11QLYfS:R3C'.,;?:.'Yi9_B'?Ml u.?.l'e)Lllk..WY1.]CI:.'1t,'.'«'CTi ?S::'JG.^"...^,.".„^..G4^Ji'y: •?!?': ?t. ^^„t z?c. ? F??:: ? ?;, W.._ It?. IF :? fi't' ? IF' C ?: ?:n 11- L:: ? _$'. $: ?N 6'? B? ? .. "?-" ?: ?,?r. :kK ?? ?. SFEfiFfY H£431}f1.1ARTERS JDB P4(] 1e501 DW`il'E 4,r16ll86 P'Al`eEi 5: ' 03 44 14 " *31_OWCr: 1_GV r.e= o_-naa=.-::aV= s.ie0 o:.r^^aa-rry_.==^..•.--a:a::^tx:r.•-.•anc:.^:W?:xa;.r:esn=:.s.°aan:a== = ?- «xn:?x:aaa:: ??::a?s•?-.caam:s?c:asur.u_ H vr?F-11 L.r.. r?c, nTa. ctaL?zv. PiPr_ Pr P T kEF. FLOYJ 'C• f"t7TTPiG F"("GS. f'F F`V :?,K?:k?k MQTES !='QIi4'(' C?T LG. S/E LENG7'MS 70'F". F'I= F'IY ?ncnuxc-aaczas:r..:rsM:c?ac:ts:meus.t:s'n m:+xw:?cmma:r,.:•r.n.^cxa?,nesc.^:a.::ur,r.:n:.m::a+c?r: .r..:mm:u=:ma- 19.67 i>1O4 92.00 51.8:' i1.82 h:- 5.600 Fl= 1v.6. G=1p0 <3.r}U 0.ao 1.02 'dF'LOCI7Y - 12.28 . 36..67 0,4363 1:.Jn . 5.24 1G, .8C) =2.74' i.R!:: Ok. ?,R •., •. 27.v(7 •Y __17.Vi. 17.Of., h=-. .a.f7:+ F'- . 16>16 v G'-100 iT 5.7 5.70 iD.G0 0.94 JELf.}C'[TY - 11 .2;9 ? y . ?a E> t?. ?s?a y 32.70 s. t ?= 5 6.1 6 o 1.452 nE u.r+ 51 .(t0 26.:5 ? 2r..2r? K- ra.M.". P.m 25.3r? i;z Gw1i?O iT 5,.7 "i.?t) 0 1 0 (9 0,90 VEL(]C::i'YY ? 41.:59 59,46 0,2009 10.70 1-41a0i 25:35 :,';`•i'.?6N 2ri,.26 iC '.ti.Ei'- ''tG. ?r0 14 Z? /, 16! Ik ?'-C Eagle Fire Protection Company ? :y i Neeada Avenae North * Minneapolis, Minnesota 55427 #(6l2) 546•2335 • PRODUCT SUBMITTAL FOR NPiL/SPERRY HEADQUARTERS 1305 CORPORATE CENTER DRZVE EAGAN, P+iINNE50TA 55122 E . AUiOMF+TiC S°RINI;IEH SYSTEM1AS -- INS?EC7ION SERVICc GJNTRAC'iS -- eNQ.iN[e"r?iNG ENi=RGcNCV MAINTc'NANi;E - 24-HOUR SERVICE r11, u - ?` Eagle Fire Protectioti Company ' ?42335 Nevada Avenue North a(- Minneapolis, Minnesota 55427 * (612) 546=2335 i CONTEh'TS ? n U k'IRE PUMP I)ETEC`PQR CHECR VALSIE CHECR VALVE JRY VF:LVE GATE VALVE FIRE DEPT. VALVE r3liTTEP.FLY VALVE PIPE FAR-LARM SPRINKLERS FLOW SWITCH SUPERVISORY SWITCH WALL MOUNT SIAMESE HANGER RINGS TEST MASTER GROOVED FITTINGS CAST IRON FITTINGS BUTTERFLY VALVE - LL'G STUDS PATTERSON AMES RELIABLE RELIABLE KENNEDY ELKHART h1ILWAUKEE VALVE ALLIED AUTOMATIC FIRE-TROLS RELIABLE NOTIFIER NOTIFIER ELKHART FHD MANUFACTORING VICTAULIC GRUt7LUR GRINNELL KENNEDY RAMSET AUTOMATIC SPRW KLER SYSTEMS - INSPECTION SERVICE CaNTRACTS - ENGINCERING EMERGENCV MAINTENANCE - 24HOUR SERVICE Northwesfern Power PRINt 0 0 , /1") /1 epnRnuei _ U^ -,?" Q?^ ?? ^ 0 0- o- o. o0 o a - a ?ticxa"^° o ,?e ????o ?- •aQaQ U? e- ? •?na;.un.+rz ° ?. ?? , 0 0 (,,,6 °?.?a a • e a(??0 IYI?J U L9J ? lJl:1 ?.L4nTA'MU U L°Y V CJ s0°• O° IIn?Sf??G? ??•^.o oCJi/ ' Ua° ?? o ? o fru?-. ?oC13 o°?i? r0`? u u uC?G:G?DD o • o .. n a...• NFPA'. I GPM 1 PSI 1 Model Number ? RPM 1 HP ' 15? 0 ? 45-1 3 x 2 M N 3600 10 - 25 500 40-335 4 x 3 Sx3 750 40-390 5 x 4 6x5 1000 40-232 8 x 6 1250 100-155 8 x 6 1500 40-155 8 x 6 2000 65-214 B x 6 2500 77-210 8 x 6 s -_r-?- : x3ME,5x ?i „ k . • 1800, 2100, 3300 & 3600 20-225 1800, 2100, 3300 & 3600 25-300 1800, 3000, 3300 8 3600 30-200 3000 125-200 M, 5 x 4 MAC:, 6 x 3 Fi W, M, 6 x 5 MAA, 6 x 5 DMD MJ6x5M,6x5MAA,8x6YR YR MI8x6YR8x6MABS8x6D YS,10x8M YS,10 x 8 M,12 x 10 MAA , . -- ? ? .??I+li Motar Drivan 3000 & 3600 50-300 3 2100 125300 3 2100 200-400 PATTERSON PUMP COMPANY A SUBSIDIARY OF BANNER INDUSTRIES, INC. TOCCOA, GEORGIA 30577 • TELEPHONE: 404•88E2101 Patterson pumps are furnished with approved diesel engines, steam turbines, or electric motors. All pumps are guaranteed to provide 150%of raled capacity and a pressu re not lessthan 65% ofrated head. 'Verticel mounled units are also available formosisizes. "Spedat Senice Fire Pumps d ..,.. . ?.?j• .__....?° 68 (rli I] 13?' ? 8?•14 3/+ 1 I q Q 68 (1? 31 41 I l2 1 y? - ? - I ? L - _ - ?. . ..- ?; ?2//, ? 'A - I 6 I6 'vli 3 29, 2 ? 1,U 13 ?J 4? i ?• Part parl Part Numper Description Malerlal Number Description Meterial Number Descriplion Meterial 1A Casing(LOweq Castlron 16 eearingpnboard) Steel 37 eearingCover(OUtboartl) Castlron 18 Casin9Nppep Castlron 17 Glantl Bronze 40 Deflector Aluminum 2 Impeller Bronze 18 Bearinq(OUtboartl) Stael 41 BearingCap(Inboartl) Castlron 6 Shati Steel 20 ShaltSleeveNU1 Bronze 41A BearingCap(Outboartl) Castlron ] CaSing Ring Bronze 22 8earing Locknut Sleel 46 Coupling KEy Steel 8 Impeller Ring Bronze 29 Lantem Ring 6ronze 63 Stuffing Box Bushing Bronze 13 Packing(BOx) Graph. 31 BearingHOUSing(inboartl) Castlron 68 ShaflCOllar Ste¢I Asbes. 32 Impeller Key Steel 123 6earing Entl CovE/ St¢¢I 13A Packing(SleevE) Rubber 33 BearingHousinq(OuPoOartl) Castlron 125 Gre95eFitting St2Bl 14 ShaftSleeve Bronze 35 Bearing Gover(inboard) Cast Iron 127 Seal Piping (TUbing) 8rass TYP/CAL SPEC/F/CAT/ONS PATTERSON MO'TOR DR/1/EN f/RE PUMPS Pfl?NTEOIN u,S.A. Shall be designed to deliver GPM at a total dynamic head of PSI when operating at RPM. The pump shall deliver no less than 65% of,.. rated head at 150% of rated capacity. The shut-off pressure shall not exceed 120i of rated design pressure. The pump should be a horizontally split case, bronze fitted, centrifugal fire pump listed by Underwriters Laboratories and/or approved by Factory Mutual. The unit shall' meet all the requirements of the National Fire Protection Association ' Pamphlet #20 and shaii be a PATTERSON suction x discharge mounted on a fabricated steel base complete with coupling and directly con- nected to and to include: HP RPM horizontaP, open dcipproof; ball bearing, squirrel cage induction motor designed for 3 phase, 60 cycle volt operation with a 1.15 service factoc , Unit shall be furnished with the following minimum accessories: Casing Relief Valve Air Release Valve Set of Suction and Discharge Gauges Pump Capacity Plate NO7E: The above specifications are typical foc a motor driven:unit. For engine , drives and additional pump packages with accessories to meet specific job . requirements, contact a PATTEF250N Sales Office. PATTERSON PUMP COMPANY A SUBSIDIARY OF BANNER INDUSYRIES, INC. TOCCOA, GEORGIA 30577 • TELEPHONE: 404•886-2101 .w ??. 9 rr? ? I ROTATIONAL. VIEWS - FOR PATTERSON PUMPS . , I 40 CLOCKWISE RO7ATION f DISC. A 1- .• VIEW A-A OOUNTERCLOCKWISE ROTAT:ON DISC. B A M IPTIn?? :?In/?l I a flnr SUCT. SUC7. A B -j 'L VIEW B-B ..............? - -??--?--? 0 UNR PM+ ONCfR ND- AIM ?- d13IWER p10ER N0. 0* v FTA ? ptw4/v3 ME cnracrrv 0 910 GP.MA7JUp5I Fi-M6M MOrpt MqNE Flpp1AE zB4T Z,5- Hp_j p{pg0 ?rCLE y80 yp?T IBGD R.FM. NOTE ? 5?? GRIX1T HOLES coNrnaLErt MeJ o? M30 w,lA l.e?,rce. Sa.,IcA. ARE PROVIDED. CERfIFiEO BY MtE aqse courtM A B C D E F G H J K L M 2%T 8-18334 B JES 8-18053 7? jh3 13 1/1 0 a 13 3/4 ?0 26 '.S ? 7? 8 7 IS 29?T ? 1 14 4 9 YBBT 9E 0-I8899 ll 14 / 9 3241 9-18335 ? ly 9 14 bq 27 'A 9 7 9 IB 328T ? ?OE 8-20764 1 IB 1/2 11 ?2 I ? + { ? I ? 4_ 9UCTION V Q0. FLAfJG a-ve*BOLTS q ?!2? D.B.C. WTLINE DIMENSIONS 4 x 3 ME 'o ..:"*"' AC- 9572 - 2 pRIP RIM BASE (OPTIONAU i- DM'NPi OdM1NU -1 • -J{# 1'?t 1 e' K K r i2• 3• M S' . qqCKAGE MpUNTED CONTR(LLER A (OPTIONAL ) FA ieq* B C 'L?AA ? i ?ip u OOUPLM H 4U i? auwo y i 4 ? p -1---?i yUyP 8-S/i"dA. Z11/22-Y4'DIA.XOLES Haes ? _e dSC1U?Fl3E E 7 V" QD. RANGE jye 9&e•BpLTS pN z' F F GC G MM: F9R CW R01. 9UCT. ON NHiNT, DIlCX, qi LEFT D.B.C. STRAOq.ING VS FOR WW RaT. 9Xr. ON LEFT. dsaH. ow nioHr N71fN YIEWEO FAOM d114ER END . . .? 0 ? Pump is guaran!ced for cne set of cor.ditiana. Perfermance guarantees are hased on ahop tes* and whea nand?ing clear, cold, fresh wa!er at aea level and at a temperature of r.ot cver 85°. Suc-ion :ift r.^.uat nct exceed Lhat shown on ccrve. I o\° _ n ?? % '80 - o T-10-01 2 go N N _-y? ?, r ? _ • ?• , IGVMO 13' N - ? ' - x , Ln z '•_ I 60 ? 1- fi I??!a y - - ? 120 ..i ?. 80 _ •? 40 GA.LLONS Pr:R idINUTE xf p I 2 3 4 5 6 ? 8 9 EO EYE f:F_EA Iki.t$ SIZE&TYPE 4X3 P"R? ?'P M 17 70 _ - MAX. SPHERE ;/ Z" IMPELLER $!0 743 CLTR!!E NO. 3 Iy?! E. A I D y C ? o ? b b is ? p x ? R1 v '< ? y 00 0 D C ? m ? n ? ? O D w? a ?m CI! ? C3 y m _ v=' NOT ip? \ CM !Oi J 6 N* K 'b p ?y M v 4b / SNVi Off COCR V' WT-IIpn" ^?? CKLR !mt WN.? " i 3 vt• ou: zucnox auce s, p5W>9G[ FAVOC 0-3?'?E58 ?? ? ?p n0. na q ' % ? f10 v / COCR - WT.- so_¢ur. 3 Vt' DI4 dSCwPGE wUGC E 0 ? t T 0 9TYLE 1 StYLE2 Z?2na? UM.ESS O' HEMM'SE SR(MD p iM' OC 15 TFI WL-M AMIN NOSE YLLVE COaNG IIEIKf VALVE 101i PATTERSCN FIRE PUMP ACCESSCR!ES n»A-w LL Z"TN d? a CHAp ?WITMWi w s oAI" M ?°. w a 0 5 w 90• EllOM AS CCNCENTPIC OISCNMfL ??ASEA ? PATTERSON FIRE PIW ACCESSORIES L3 1Ll FLANO[S AMD FUN7E MILLIN6 ?RC IM CONfWIMUNCE WiTM A!A 0•16-1,1251b CI ilu1GE STAnD?MU9. uNLCSS ECCFNiRit SUCiR,v MIUQA MLI pRApSED w1STE CdE r ? 1 pP[N NABlE WW C ? • ? PA?TERSON FIRE PUMP ACCESSORIES '""___ ____-__.__- 1 -? . L4-I . 4m c MIEP MW IEl11MLVE aArlax ww M4Er_vLLVE WOU IMM REUEF VLLVE sTstNart ta Wnroc wsE vu.vc 440" - - - - ---------------ri Bulletin M30AT-1-85 L, LIMITED SERVICE CONTROLLERS WITH AUTOMATIC TRANSFER SWITCH 9 The Metron MTS Automatic Transfer Switch provides operation of Limited Service Pump motors from an alternate source of power when the normal source fails. These transfer switches are a part of the Limited Service pump controller; although mounted in a separate compartment, they are factory assembled, shipped and installed as a part of the controller. The combination Limited Service controller/transfer switch is listed by Undervvriters Laboratories and meets the requirements of Section 7-8 of NFPA Standard for Installa- tion of Centrifugal Fire Pumps (NFPA 20). The MTS Automatic Transfer Switch is a mechanically held double throw switch with a fast acting drive mechanism. Operating coils are momentarily energized from the source to which the load is being transferred. The switch is interlocked electrically and mechanically to prevent both services from feeding the load atthe same time. The transfer switch is capable of manual (nonelectrical) operation. METRON, I'NC.` ` 1051 SOUTH PLATTE RIVER DRIVE (YO PHONE 303 744-1791 TELEX 4-5729 I Close differential voltage sensing circuits are sup- plied on all phases of normal source. Pickup voltage is adjustable from 85%to 100%of nominal and fadory pre-set at 95%. Dropout voltage is adjustable from 75% to 98% ot pickup voltage and tactory pre-set at 85% of nominal unless otherwise specified. A voltage and frequency sensing circuit is also pro- vided to monitor the emergency service. Voltage pickup is adjustable from 85% to 100% of nominal, factory pre-set at 90% unless othenvise specified. Frequency pickup is adjustable from 90% to 100% andfactory setat95°/ unlessothenvisespecified. A time delay is provide to override momentary nor- mal source outages to delay all transfer switch and engine starting signals. This delay is adjustable from 0.5 to 6 seconds and factory pre-set at 1 second u nless othenvise specified. An additional time delay is provided to delay re- transfer from emergency service to normal service. This time delay is adjustable from 030 minutes and factory set at 15 minutes. This time delay is by-passed if emergency source fails. An unloaded running time delay for emergency engine generator cool-down is also provided, and adjustable trom 0-5 minutes, fac- tory set at 5 mi nutes. The transfer switch provides a special circuit that de-energizes the motor control circuit three (3) sec- onds prior to transfer in either direction to prevent abnormally high current transients which can occur when transferring the motor load from one source to the other. An isolation switch ahead of the alternate source i nput terminals of the transfer switch is provided.' When this switch is opened, auxiliary contacts in the engine start circuit prevent starting if commanded to by the transfer switch. An additional auxiliary contact on the isolation switch is provided for remote annun- ciation of isolation switch position. Engine start contacts are provided which close and/or open when normal source fails. These con- tacts are designed tor low voltage engine start signals and are rated 10 amps at 32 volts D.C. One auxiliary contact which is closed when the trans- fer switch is connected to emergency is provided as standard. Other contacts for monitoring switch posi- tion are available as options. Two pilot lights, one for normal position and one for emergency, are provided to give visual indication of switch position. An externally operable test switch is also provided which simulates loss of normal power so that the [ransfer switch operation can be checked. `A ciru it breaker can 6e supplied in lieu of an isolation switch if the altemate source of power is a separate utility. NOTE: For Full Description ot M30 Limited Service Controller Features See Data Sheet M30 I ? ? EC TRANSFF.R SW. CONiROL PANEL iRANSFER SW. POWER PANEL ISOLAiION SWIiCH "ESSURE ?CWuNMiMG /[Rt00 TIYM (Cllldllt ql(YM • .:? QW? ? . } MA1? M1? • ?fP4 /?? ? ' J L C - I TCA W M?L 7ian u. 24. .3 RELAYS CR1 6 CR7 - POWER AVAILABLE CR2 - GONfROL CR3 - MI`.NUAL SiARi ? r MOTd1 CM?11C/0R ?--SrRRr uvcpt ? 10' sw. tNLer(rx)re i) , 1-. ? ,.7v ass' - a4 2FNqTE STARi PtRM Rl1NN 1 W HuQP 5C ?Nt ND fES: 1. DRAWING SFi0W5 SUGGESiED LOCAiION OF PRESSI.'RE SWITCH 1NLEi PIPE. ( INStALLED BY USFR ) N.C. corvrACr PO'rlElt AVA I LABIE N .0 . C(NJ iAG i POWER AVAIIABLE ??,.?,. - - f?M1fliiUN IN)76l•MEHIS.:y:. ..:. ---, -- - -.%/? ca+Txoiirw Haw uc, i.ltnwei fIRE ROMV CfWTNULI[M ^ uwIrrn.cnvIcc.W/IRl1NSFFR SWIfCH ? 51:=ntn4fiz-.. ^ ? ? :?• ? f ?.s• ,-., . . ? ? ?1? an i i ?V r a1f i : . ? n?-<.•-ro.?..naw?a .ua• l1 Rt K?1 Cp!-1YoVM tTAN, ?[1M ll U ls ?.a 11YrcNl? WA T(?1 O Il ? U I I 1 I ??d . ? n I^1 n ? 1 I ? , • s.A nc+u? ?? ? 1 . ? ? PY I 1 ? ¦ ?l0.?np? ? i?wMt? FI ? G4 ?w M+« ? i ? ? I ? M H?? [i?ior?e ftYn p I V+T ? w M aax ra aw.? ? x< ? flb[ ?DOf AqP A qIN1Yf114M11 M[Cim I I 1 AYMI? lwf'M fqfKT! fUWr'I??M f1?R111? MPYY M?IOY. no?niw swr-N car?CH Mow wn? fnrcw aw. IMaf 0116pIY YIGNm ? u u ? i ? ' 1 f i C11? 1 1 ? ? M ?C -"U p? IKYO N?? • 11M = ie u 0??1 b ) 11ry - ?1N1 Rlpy T111{O Yc-roTM CoY?AtrM YCA -YOtO2 CONtA[IM WON&b LMt\CT Hy-11p&TIpw SnTtw CMfKT yorza ron ncio wi4Ta I. Wt CwP wIeiN "V. ttmt Ar q11Y1M41 YA410 CY-4. ? YOMn CMITKIM AUAil4111 COMUth YG1 YT[0 Ipl .?lOi Wtt ~ MRm bI'lAKl la Ar .u b0 rtl Ww IYrroN - In101 W" PLLII 'T-n+e+t SIARr (U O 1[pMINAI IKS'GMAIIM1S ITC CON1N0\. 11E10.?3 4MV C, SA2.8t114fA 0.j?" q YMa? ? r pn _IMIT[D S[RVICE CONTROI.LER MODLL M30r COM41x[0 MAM?4t-AUTOWTIC OCPC1.5 TM[ UNE WITN IMiMSVCR SWItCM ? 104S? ? , A Submittal Data ? ? \• 3450 RPM, 60 Cycle JOB or CUSTOMER: ° ° ENGINEER: ti CONTRACTOR: SUBMITTED BY: DATE: -„ APPROVED BY: DATE: ORDER NO.: DATE: SPECIFICATION REF.: QUANTITY TAG NO. MODEL NO. GPM FEEf VOLT PHASE COMMENT CPa- yok u 7 13 8 1/ 0 ? 1014x ApPlications h 11 Flow Range: 3.3-15 U.S. GP I M (0.75-3.510 r) +.r NEOUIXED 40 FOP MDT011 Tempereture Ranpe: 32'-250 °F (0'-121 'C) Y REYOYAI Maximum Working Pressure: Models N ? 20-70: 175 PSI (12 Bars) i 100-140: 300 PSI (20 Bars) O ? c Discharge Positions E ?i" lil{u ol.en.rp. ?uumn. uum.,. An.rw. ? ? n.ry. aso O?rP i11bn 7490 PMiIIon SAO Po 690 PMltfOn YAO PMltian Q I 1 j, \ A Suctlon V D 2'X 1 Suell on Suc tion - Suetlon 7Yi .• BoM PNtam 5' x 21Sa" (Ofschar" + . %• Npyy AEOw Suedan) Electrical Data, Dimensions and Weights NEM11 OWmWe In IxM NN &N0. SMy.VOI. Pump TYPO NP Yota F. S Ph. VoIH fan Sis Din. Suc. &s NPT Slae NPT A B C D lbL LDS• C6IFt• pb2qW 6.6 . I.l6 1 115/lOLT711 YC t 1 LlA 1-7/16 5:15 6-1A 8 61/8 31 78 . 47 46 4.23 4.23 02-201(U 0.5 1.25 3 2911-270/410 6bC 1 1 61/8 1-7/16 1 5.718 1-17/11 19-1/ W13/15 71M N N 4.23 .p240[U Ub 1.28 1 715fl04O0 YC 1 1 1 E716 1.13/19 /0-7// 7J/16 47 63' 1.23 CP2•901lU 0.75 1.25 3 IO!-l70/450 38G 1 i•tvu 143119 nen 1.vu ot is cn enrrcu 1.6 tu 1 11v24ra src i i i i-+vie i•iane :i-sie 7-u16 a ss A.n art-w¢u enaaw 1.0 1 6 1.25 1 15 3 maxwaso 1 nvtw-za wc ac 1 i rvt i-arn tsvu wd r n 4.23 cn•wuu . i.s . 1.15 3 211e-:30i450 ssc i 1 Fv: iaane tt-via 7ane TanS ex 74 w a 4.23 4m cn•n11tu &1 1.15 > >+vaFrs ae > > n iaWis 0 1-13/16 Win 25 7J/16 N 72 4.23 02•701fU 2.0 1.16 7 191-230/460 rs4M > SEC wc 1 1 1 i i ii-in? 144 s+n 4.112 we m w en-uwu ax-ioo¢u aI 3.0 11.u 1.15 n > a 01111-boi4eo imc i > 12-711e isie 29-1/4 8-1/2 a a Iu 6.04 aw aiasw 3.9 1.15 • nvNwsa ac + + u 14n sia aane 04n +3/16 F4111 3+ rr 0 101 t.M cn•12OKu 3.0 1.15 3 toFnoiao Iarc > > u i- wm 14619 • awu &.vt Iw »l a.a en-Mm q14401fU Le 6.0 11.» 1.15 1 ? 3 lOFilOqEO tim 114iC > > 11 1 15a/16 1.5/6 7]-11/16 Lt/t 115 t!i LO Performance Curves , Z0D 850 wo ? 550 500 Iw eso eoa 350 ioo 300 250 200 so • 150 100 0 W 50 W LL S 0 6 r w W W W i p LL CP2•140KU (5 Hp) 3450 RPM, 60 Hz CP 2-120K U (3 Hp) CP 2-100K U (3 H p) CP 2-70KU (2 Hp ) CP2•50KU (1.5 Hp) Ha$ 7pGE hH Hp) Hp) p) ? OMWAR wafto L*IIAV% Hp/STAGE 0.25 o.so 50 0.15 d0 3p O.t O 20 - 0.05 10 0 1 2 3 4 5 6 7 8 9 10 17 12 13 14 15 U.S. GPM a os i is 2.0 zs 3.0 a.s r•m Construction Materials NPSH C urv es 30 Stainless Steel Shaft, Impellers, Dlffuser Gufde Vanes, Intermediate Diffuser Chambero B ? N - WATEX WITM ron2@ DIS SOLVED AIR Impetler Split Cones, Impeller Split Cone Nuta, Bottom Shatt 8earing, Impeller Seal Rings p Cast Iron Diacharpe and Suctlon Chambers, Motor 5haft Coupling Tungten Carbide S M echanical Sheft Seal diamond 10 oliahed in bronze or stalnless o p steel carrler u? Steel ? A IRLE SS W ATER ? Base, Stud bolts ? EPDM aRings LL o s +0 1S U.S.6PM v..v?...?a..?ra.m..?.n................_.-.-.?,....?.?...? _.....?._. Bulletin M10-7-85 JOO CKCV pMMv p COMMMOO L I 9 Jockey (or make-up) pump controllers are installed in the same water system as the main Fire Pump Controllers. Their purpose is to maintain normal water pressure which may fluctuate because of small leaks in the system. The use of this small pump for pressure maintenance eliminates un- necessary frequent starting of the main pump, which in turn reduces pump wear and overpres- su re conditions in the water system. The series M10 Jockey Pump Controller includes the Standard bourdon tube pressure switch with independent high and low set points for automatic starting. A fusible disconnect switch is provided with externally operable handle (circuit breaker can be supplied if required but voids U.L. approval). A three position Hand - Off - Auto switch and manual start pushbutton are also included. A mini- mum run period timer and control transformer are standard features on series M10A. Series M10B does not have the minimum run period timer. It may be ordered with or without the control trans- former. See ordering information on reverse. All external control devices are conveniently mounted on the front of the cabinet. DATA SHEET M10 FEATURES Controller is listed by Underwriters Laboratories. Nema 1 Cabinet. Mercoid bourdon tube type pressure switch with independent high and low set points. All components are U.L. Listed and of heavy duty industrial grade. Sizes from 1/2 to 30 H.P., 208 to 600 volts, 3 phase, 3 wire, across the line. ? O \ ooa ° a METRON, INC. 1057 SOUTH PLATTE RIVER DRIVE DENVER, COLORADO 80223 PHONE 303 744-1791 TELEX 4-5729 Oo RDMM(m MFORMQflOm SERIES M10 IOCKEY PUMP CONTRULLERS ALL SERIES M10 CONTROLLERS HAVE MERCOID BOURUON TUBE PRESSURE SWITCH MOOELS M10A WITH TRANSFORMER AND RUN PERI00 TIMER MODELS MtOB WITHOUT TRANSFORMER OR RUN PERIOD TIMER H.P. YOLTA6E H.P. VOLTA6E Vz thru 7'h 208/515 1/2 thru 71/2 208/575 10 208/230 10 208/230 10 440/515 10 440/575 15 208/575 15 208/575 20 and 25 208/230 440/575 20 and 25 208/230 440/575 GI M TE I L PRESSURE SWITCH 11 S•D 4 PIPE TH'D -D+I.S rD vAC HP NEMA SI2E 120 0-2 1 3 2 (10) 5-7.5 3 03 1 250 5-7.5 2 (1¢) 10-15 3 0-7.5 1 200- 10-75 2 230 20-30 3 0-10 1 460- 15-25 2 575 30 3 NEMA H W ? APPHOX. SIZE SHPG. W. 1 8 2 24s/a 157/e 53/a 65 Lbs. 3 36 217/e 71/2 125Lbs. {R ? t?a : x O O O D O I I . ? ,. ? .. .. . . W RlffD WlRLdO MOfOR 1 N[CT pt?GNY ? A[t.?v! Cpy? fiM Iry fI l ? ?-? 1 1 1 ? I ? ZR/ I Tt 43 iJ <oi+rROt rveAwa/o.?MrA .si. v`i !l -Y? qCY L '-""- "'?"" S t sec ?ar[ 4 NRN? . Q Ofi f--------- T/MER MR Q : oM Sft MoTG' / AU7'a pp_.SSUqE CcUtCN y JI?/YCN ? NG ' /1 Mc p 4 07si9 : ? J SLC NOTC ] ` ' -------- SW?f ? 20 SYMIOMO g .y T?+R AO + NOTES: SER/E5 M/OB SUPPGIED YY//HOUT T/?7ERlT 2. OC/7Y/NE D/MENS/aNS REFFRENC£O TO /lP. ?. S7F!?T C,oN ACT??STHEL0 3CLOSEO WN 14E i5 CNfRO/=f0. lOCKEY PUMP CUNTROCLER, WITH (/SEODISCONNECT, S£RiES*KW&, vL c+sr[o NP N W D /-IO 2f # /6 6 ? /5-25 ea Ti m 6 g ,70 36 /9 7 ?? ? ? i I? L a The Ames Company, founded in 1910, has long ;DO° P?TEC'rOR '.. ` - been an industry leader in produang fittings and ?' ,4> vatves for pipeline systems. AII Ames products - ? aremanufacturedatiheir60,000sq.ft.faciliry ?????I ????? in Woodiand, Califomia, insunng qualiry wnvoi & Prompt 5ervice: , For Fire Protection Systems ' `: ;a ,. ? F C? ? ?n J1 3 `?Y ? '?. ; . •? ... . ./' k .p d fl _ ? .y?Ti` d . . . ' - . . .. . ... . . . n . .-.. _. . Ie . . .. . .. VNi ? ...M,? ? . Y?.l?6.U7Y? E 8VCl? ? e ? l:r ? Thz'./UT:P.S Q9t@Chlf,(?i?10C?LV2?VB d@1BClS •4:+ D 2ny?e?akag9orunairthortzeduse frornfireo[automaGCSpnnk(er'systems k ? Tjae vaNe also prevents wat4 from p badcilowirx}intothepubhcrqamhne?' •?1 ? ?' ? .;i al ? Ames Company, Inc 1485 Tanforan A t . ?.. ? ' - . . .. ..... . A - . .. ..,. .— J ?ue PO Box 1387 - Woa t1 .'k U S - 1 ,v n3 'r F?, !MP ^ ?t K 4, " c f ? , Ames Detector Weights & Dlmensions (Inches) ? ; . , ,.,._ _ . . _. . . _ . , . :, . .. ?.? . ,..,._ .. ... .. ; 4„ A113 2 - 25 16-1/2 9 13 12-1/2 1 NPT 5 15/16 751bs 4 , 6•• A113-226 22-1/2 11 15-1/2 17 1-1/2 NPT 6 1 1101bs x A113-227 26-1/2 13.5 18-1/2 21 2 NPT 7-1/2 1-1/8 1881bs a" . - ,•:; 10" A113-228 36 16 21-3/4 28 2 NPT 9-3/4 1-1/4 2241bs , 2 ? d? Y ?? ?i ? C ? ? , ? .f ?'C ??W A4'(?µ? .' Y {p '. < `?. b)"3 A 3 A ? ? 'ti. r } 4 ; f p ? . / f ?q . ?.€ ' f rt C' aL b ? { Sf ? t ?.. f .,' j 9 m?' ? ;F y ? . i 4 1 =?„ 1? ? } ? y, .E?i?' pt ??n, ?,a+'? !1 1 .? . 4" 1.66 200 ? . ? 2.64 :. , 6„ 1.95 ? 500 2.36 8" 2.31 1000 2.80 2.63 4>,; ?. 10" 2.31 1500 2.91 2.22 2.25 ?'. . s, r? • ? r' 2G00 2.85 2.22 2.25 $ ? 4 t ?2500 2.04 220 i, V}•yUy el Y erSp?Micilittions 3000 2.10 2.20 F-+??wprwn9Presstue4,16"8?(1,7515,10"(150P51)' 3500 230 ?9 Ft noe ditpension5 and ho(es m acctp[dantqwNi hroughYaiveatgrvenf(owrates 5 {? + f9?? ??V?V?6J.?'^?SO+ ?tM? Fa''?t??c4 r?' eR ? ib+L ?' vcr.` f d ? "C?< p ' ty? ? r tn? 1,s+.^ `? ?tS a s` ? .. ? u+ ? {??y te ? .? yW ? * M ?;+?? 5??, r, ,? i, •r.?`fi.?r'I?? '?,'J??`( na?ne?iate pro?%?ttes?nominaksFZS drzecUan of flow ` ' ` ?' '"'" ?34 ?`' ..?„ ?`?s. F"?^ Pdtt1J`'lf?9?l,Q3F•DfRiBflUfBCtt'If8 ? ..?? ?, ??? ` ^ `? '? z1 .,.<x rx ? ,?? ?. ? ?? -?, i,?.. 4'F? I t3 F . ? ?,? +' `r..:E ? •?lzk#? ? Q"? i P:. 9i F -C ?'-, 1 ; t?.?. LISTED ;'?? ?y• td An?.'. < 6. ??'.i,? i ,?a °:C?? .v [ Ames Company, Inc -• 1485 Tardoran Avenue P.O' Boz 1387 . JJoodiand,'Caltlomia 95695 ,(9161666 2493 'w ???FORM#A•7200 i , 3. HE5ILIENT `0' RING SEATING PROVIDES; :. LEpKTIGHT SEALING, ANTISTICK OPERATION, SIMPLE FIELD REPLACEMENT 4. APPHOVED FOR VERTICAL ANU HORIZONTAL INSTALLATION ' 5. LISTED BY UNDERWRITERS LABORATORIES, INC. APPROVED BYFACTOflY MUTUALRESEARCH CORPORATION Reliable Model D Swing Check Valves are general purpose valves which perform all regular check valve duties. Both models are approved for use in fire protection systems, typical applications in- clude connections between pdblic water supplies and private fire systems, at the discharge from fire pumps, at gravity tank connections and at fire department'?Sumper connections. These valves provide leak tight, non stick operation through the use q} a resilient `O' ring seal installed in the valvdi's seat. This seal is field replaceable for easy -? maintenance. • .?,. ? ? ? ,??:•. ? ? :4JKCNECKWI?`1? .?" ?+ si7$ MODFlP9 i UlifO?f 1. fm . _€ MODEL DG GROOVED END CHECK VALVE The Model DW Wafer Check Valve is easily in- stalled between standard Class 125 flanges with gaskets using one set of flange studs. Inspection and repairs are easily accomplighed by loosening the studs and slipping the valve oLit from between the flanges. The Model DG Grooved End Check Valve is alsb easily installed using mechanical grooved cou- plings. This valve also provides easy inspection and repair by removing the couplings and slipping the valve out from between its connections. 2. EASILY INSTALLED COMPACT LIGHTWEtGHT MODEL DW DESIGN WAFER CHECK VALVE ---??i . J - --- BOSS A BOSS B (Typical Both Models) Boss A Factory Tapped to 112" NPT. Boss B may be tapped to 112" NPT ITEM NO. PART NAME PART NUMBER QUANTITY BOdy, Wafer 91006824 7 Groovetl-Ends 91006815 1 2• SeatRin 96006824 1 3 Ring 95446823 1 4 Clapper 91906824 1 5 Hinqe Pin 95006624 1 6 Plug 1/4" 96604403 2 7 Plu 112" 98604402 1 8 Label 94392009 ? VALVE DEBCflIPTION 1. Rated Working Pressure: 175 psl(12,3 bao 2. Factory Hydrostatic 7est Pressure: 350 psi (24,6 bar) 3. Stud Length (not supplied): 8-5/8"x 9" double ended stud bolts and 16 nuts, Mbdel DW-Wafer style only. 4. Groove Dimensions (Model DG): Outsidedia.4.500" (114.3mm) Groovedia.4.334" (110.1 mm) Groove width 3!8 " (9.5 mm) Face of Valve to Groove 5/8" (15.9 mm) 5. Friction Loss - Ecpressedin equivalentlength oF pipe, based on Hazen Williams formula with C =120 ? 4Equiv. Length 4"Models DW and DG 9.8 ft. (3.0) 'Not Field RevlaceaWa 6. Shipping Weight 4'Model DW - 17 Ibs. (7.7 kg) 4" Model DG -17 Ihs. (7.7 kg) 7. UL Contrai No. -143V 8. ULGuideNo. - HMER 9. Ordering Informatfon Specify • 4' Model DW-Wafer Check Valve P/N 6104040000 or • 4" Model DG-Grooved End Check Valve PIN 6104040015 , . _ • 3oss B Tapping•112" NPT (if required) :J The aqulpment pressnroA In this Euilmin is xo be inatalied in accorCencs with the lateat publiahed stnndertls of the Natlonel Fire Prolection Associatien, Fadory Mutual Heaeareh CerDOretion, or other simllar orpanire[ions entl ello wlth the vrovlalom of povarnmsntal codw or ordinences whenavar appltcebls. n-muir opnnKler uewces, prutecfrng (tJ@ anQ pruperty Jo/ over 60 ? Reliable Distributors locaced throughout ihe United years, are appraved by all jire-insurance and government agencies, StaLes, Canadq arsd joreign countries, haue n&fetime and are installed and serviced by Reliabte's chain oj drstrrbutors. of experience nnd are as near as your telephone. C_ ? YN + 1. DIFFERENTIAL TYPE ... SIMPLE ... LIGHT WEIGHT CONSTRUCTION. 2. SCREWED IN ONE PIECE AIH ANU WATEfl SEAT- ?, EASES MAINTENANCE. ? N EN, 3. BflONZE SEAT WITN "`0" HING SEALS- ?,tim? PREVENTS COHHDSION ANO LEAKAGE. - Vt 7 r ? 4. SINGLE HINGE PIN AND LATCH DESIGN- 5 T k + ,? ,n NO COMPLICATED LEVERS. 5. SIMPLETO HESET-NO SPECIALTOOLS REqUIREU. 6. TAPERED AIR ANU WATER SEATS-INDUCES HAIflLINE DIFFERENTIAL OPEflATION. ' ft? 7. ONE PIECE RUBBER FACING-PROVIDES MORE ? ? ...` RELIABLE HUBBER-TO-METAL WATER SEAL. 8. FURNISHED IN 21!:" NPT, 21/2" GROOVED END,Ofl 65 MM. 9. LISTEO BY UNDERWRITERS' LABORATORIES, INC.- 21/=„SiZe APPROVED BY FACTORY MUTUAL LABORATORIES, FIRE OFFICES' COMMIiTEE, N.Y. CITY B.S. & A.No. 587-75-SA The Reliable Model A Dry Pipe Valve makes possi• the Dry Pipe Valve. When one or more Automatic ble the installation of Automatic Sprinkler systems Sprinkle?s operate due to fire, the air pressure in in buildings in which freezing temperatures prevail. the system is reduced-the Dry Pipe Valve opens • This type of system called the Dry System has air and water under pressure flows in the activated under pressure instead of water in the piping above Sprinkler(s) and is then distributed on the fire. INSTALLATION MEASUREMENTS IN INCHES J ? L- $,. r +- ,.. 7 3/8•, + y O I ? ' - ? }6.. i ? I ---?_4..? _7.. 12,11, $. FIG. 3 YRIA • MODEL A DRY PIPE VALVE - MODEL A TRIMMINGS FIG. 4 ORDERING INFORMATION •VALVE (175 PSI Pressure Rating) END CONNECTIONS PART NO. 21/2' Threaded 21/z' American Standard Taper 6107020000 (Both Ends) Pipe Thread (AN51 B 2.1) 2'/;' Grooved Mechanical Grooved Ends 6101020015 (Both Ends) (ANSI not available) *• 65 Miilimeter 2'/,' British Standard Pipe Threads 6101020020 (Both Ends) (BS 21 - 1973) ' .0 ' Valve Shipping Weight = 60 Lbs. (27 kilo) Threaded Trim Ports per BS 21-1973 TRIM KITS PART NO. Basic Trim j 6501090000 Fill Line Attachment ? 6501710000 Priming Cham6er Attachment 6501080000 • .4 4" Size Illustrated The Reliable Model D Dry Pipe Valve makes possi- bie the instaliation of Automatic Sprinkler Systems in buildings in which freezing temperatures prevail. This type of system called the Dry System, has air under pressure instead of water in the piping above 1. DIFFERENTIAL TYPE ... SIMPLE .... LIGHT WEIGHT CONSTRUCTION. 2 SCREWEO IN ONE PIECE AIR AND WATER SEAT - EASES MAINTENANCE. 3. BRON2E SEAT WITH "0" RING SEALS - PREVENTS CURROSION AND LEAKAGE. 4. SINGLE HINGE PIN AND LATCH DESIGN. - NO COMPIICATED LEVERS. 5. SIMPLE TO RESET - NO SPECIAL TOOLS REQUIREO. & TAPERED AIR AND WATER SEATS - INDUCES HAIRLINE DIFFERENTIAL OPERATION. 7. DNE PIECE RUBBER FACING - PROVIDES MORE RELIABlE RUBBER - TO - METAL WATER SEAL. 6. THREE CONNECTION STYLES AVAILABLE: - ANSI FLANGED INLET ANO OUTLEi - ANSI FLANGEO INLET AND GROOVED OUTLET - METRIC FLANGEO INLET AND OUTLET 9. LISTED BY UNDERWRITERS' LABORATORIES, INC. - APPROVED BY FACTORY MUTUAL RESEARCH CDRPORATION & FIRE OFFICES COMMI7TEE, N.Y. CITY B.S. & A. No. 587•75-SA. the Dry Pipe Valve. When one or more Automatic Sprinklers operate due to fire, the air pressure in the system is reduced - the Dry Pipe Valve opens and water under pressure flows in ihe activated Sprinkler(s) and is then distributed on the fire. INSTALLATION MEASUREMENT IN INCHES VALVE A 8 C D E F G H I J 4 16 61/: 5 17 10 11 15 4 Yx 2 Ys 3'/z s 19 83I8 65?B 1851e 11518 11 1 15719 41h - 31/x INSTALLATION DIMENSIONS ot 4" and 6" Sizes 1 •-- --1r ? . ReliaGle distributors, located thAughout the L(nited States, Canada and foreign couniries, have a lite.time of ez0erience and are as near a5 your telephone. , , • °- ,. . , . • Reliable Sprinkler Devices, protecting life and property for over 60 fp years, are approved by all fire insurance and government a9encies, t' and are installed add serviced by Reliable's chain of dimibutors. i ?J -?? ) •, iVorkinq pressneres: , 21120•12" Cold Waler, NonShock 1751bs. 14"-Cold Water. Non-Shock 1501bs. m Outside-Screw•and-Yoke e Branze Mounted n Parallel•Seats o Dou61e Disc • 2'h" through 14' HYDROSTATIC TEST PRESSURE: 21h' - 12' Seat & Shell - 350 psi.. 14" Seat & Shell - 300 psi. Part No. DESCRIPTION MATERIAL A.S.T.M. SPEC. 1 lock Nut Bronze B-62 2 Handwheel . Cast Iron A-126 Class B 3 Washer Bronze B-62 4 Yoke Nut Bronze B-62 5 Stem Bronze Rod B-16 6 Yoke Cast Iron A-126 Class B 7 Hex Nuts Bronze B-16 8 Gland Follower Cast Iron A-126 Class B 9 Gland Bronze B-62 10 Hex Head Bolts Steel (Rust Proot) A-301 Grade B II Packing Graph. Asbestos 12 Bonnet Bushing Bronte B•135 Alloy 2 13 Yoke ta Bonnet Bolts & Nuts Steel A-307 Grade B 14 Bonnet Castlron A-126 Ciass B 15 Gasket Asbestos Sheet 16 Bonnel Bolts & Nuts Steel A-301 Grade B 17 Stem Head Mang. Bronze B-132 Ailoy A 18 Disc Rings Bronze . B•62 19 Discs Cast Iron A-126 Ciass B 20 Seat Rings Bronze B-62 21 Wedge Pins Bronze • B-62 22 Body Castlron A-126 Class B SIZE A B C D E F G H 1 H 2yi 1'/: 1 I yi 12 %a 15 Yi 8 7 6 '/e % 3 8 1T 1?/i : 5%a 14% 10 10'/t 6 '/z 1?j 3'h 8%z 8/: 1% 16ye 20% 8 ]0!/a g %e % 4 9 i 9 1'/? 18 % 22% 10 14 6 '/: 1% 5 10 10 'L S4 ZO% 26'/e 10 1 l?/ 8 ?/t 1'/e 6 10%Z 11 2?/ 24% 30% 12 20 10 %r 1% 8 11 %z 13 %z 2%= 31 'h 40 %i 14 26 y2 12 % l % 10 13 16 2,1 i 361Y4 47%6 16 32%r 14 %t l?j 12 14 19 2?i •1. 21/: 55?/is 18 38 16 V, 1?/e 14 15 21 2%z 503/e 65Y: 18 45 16 'h 1?/? WEI .HTS - POUNDS SIZE 2'h 3 3'I: 4 5 6 8 10 12 14 FIG. 62 51 70 77 109 126 180 314 1441 614 890 F= DIA. OF HANOWHEEL H= NO. OF BOLTS WHEN SoECIF1ED J- C:A. OF BOLT G= NUMBER OF TURNS TO OPEN BODY MARKING 80NNET MARKING SIZE lll YEAR ll5W 4FMIP- KENNEDY ' YOKES ARE BOLTED ON IN SIZES LARG.'W THAN 4 INCH; 4 INCH AND BELOW - THE YOKES ARE CAS7 RITtuHAL WIYN 90NNET. 125 1.E3. AMERICAN STANDARD END hLANGE DRIlLIN6. KENNEDY YALYE iRON GATE VALVES Underwriters'; Factory MuGual ? i.; . FIG. 68 Flanged Ends ? f.' S?? ? y C 31 No. 35 Elkhart Pressure No. U-20 Angle Valve ELKHART VALVES Restricting Disc Double Female N.P.T. Threads } • Na. UP-20 and UP-25 Elkhart Combination Pressure Reslricting Angle Valves Paf. No. 3,565, 089 Elkhart No. U P-20 dou ble female, (No. U R25 male and female)1'/z"and 2%x"U nderwriters' li5ted, CombinatiOn pressure restfiCting angle valve. UP-20, female inlet and outlet with tapered iron pipe thread only. UP-25, female inletwith tapered iron pipe thread; male ouHet, specify hose thread desired. Finish: Rou9h brass. OOtional: Polished brass, rough chromium plated or polished chromium plated. EaSily set for any iniet pressure. SDeeify size: U.L. Listed 1+12" and 2y?" ? No. 34 Elkhart Pressure Restricting Vaive ? ? Elkhart N0. 34 (1 y2" or 2?/?") pressure re- stricting valves, body and swivel of cast bress, breakable segment control of special alloy. FiniSh: Rough brass. Opiional: Pol- ished bress, rough chromium plated or pol- ished chromium plated. Specify siza: U.L. Listed 2'h" Dimensions o1 U-20, U-25, UP-20, UP-25 and UJ-25 Valves In Inehea Water WorMin[ Presmre 300 pounas Siza 14' 254' Valre No. U-20 U-25 UfO U-25 RaEius Swin¢ 254 2% 3% 3% Cmter to tece of outiel ? 2%u 2% 3% 3% SamewitnwpanECnain ? - 21 yE - 6F6 Diemeter of hanG wheel 1 1 5 5 Overall Neight -open ' 7$ 7$ ? ? ? Overall Height-tloseO ? 6% 6% ? 9h 9% WeigM in oounes 6 6 lIK 11Y. Elkhart No. 35 pressure restricting disC, made of heavy brass, hole inversely pro- portioned to the pressure on the valve. IMPORTANT Whan orderin9. Dleasa lurnish lactory witn Iha followinB iniormetiorc (1) Weter oressure at ba5a o( stentlDiOe (1) lolal numDer ol iloors. (J) NumEer of Ive hOSa unit5 DBr tloor. (4) L¢ngth of hose at each IoCellon. (5) Size of hose. (6) Km0 0/ hose. (]) Size enE ty0e of nozzle. (8) Nozzle pres- sure tlesiretl. (9) InsiGe Oiemeter of standpipa (10) Height of ea[h installation ebove Desa of stantlpipe. No. UJ-25 Angle Valve Jones Male Conneclion Elkhart No. UJ-25 (21h") Jones Connection. (300 Ib.) angle valve, rough brass complete with wheel handle. Female inlet having tapered iron pipe thread only. Outlet has Jones Male Connection. Optional finish: Polished brass, rough chromium plated, polished chromium platetl. No. 24 Hydrolator Valves Elkhart No. 24 (1'/z' or 2?h") Undenvriters' listed hydrolator valves for venting and tlraining valves. Brass tinish. Optional finish: Polished brass, rough chromium plated, polished chromium plated. Conforms to Federal Specification WW-P-541b. Specity 5ize: U.L. LlsteO 1 rz„ Elkhart No. U-20 (7 ?/?" or 2i/z") (300 Ib.) double f8maie angle valve, rough brass finish complete with wheel handle. Female inlet and outlet having tapered iron pipe thread only. Optional finish: Polishetl brass, rough chromium plated, polished chromium plated. Specify size: U.L. Listed FM Appravatl Nh" ana 2;?" 1?/?" and 2112„ No. U-25 Angle Valve Femaie N.P.T. By Hose Thread Male Elkhart No. U-25 (1 1h" or 21h') (300 IC.) male anE female angle valve, rough Drass body, finish complete with wheel handle. Female inlet having tapered iron pipe thread only. Male outlet, specity hose thread desired. Optional finish: Polished brass, rough chro- mium plated, polished chromium plated. Specify size: U.L. Listed FM Apprma0 t Yz" and 2?h" 1'fi" antl 2?/?" No. 589 Escutcheon Plate for Angle Valves Elkhart No. 589 (11h" or 21h°) Escutcheon Plales. Specify stamped brass or steel, Finish: Brass; satin, polished or polished chromium platetl. Steel, catlmium plated. b?e) ELKHART BRASS MFG. CO., INC. • 1302 W. BEAFDSLEV AVE. • ELKHAHT, IND. 46514 BRONZE BODY L•1 FOR SUPERVISORY CONTROI - TRdIIPER SVYITCH SEE REVERSESIDE. DIMENSIONS - Inches MODEL BBSC1" BBSCIX" BBSC1%" BBSC2" 66SC215^ A 1-1/76 13176 7-7116 1-5/8 2-1/16 8 r 2•7/8 2-5/8 2-7J8 3•1/4 4118 C 3-1176 3-11J28 3-20/28 4•318 4-5/8 D 3-13116 4-8/28 417/28 5 5-1/4 E 1-6/16 7-73/76 23/16 2•3/0 3-5(16 F 1•13128 2-7f8 2-3/8 3d116 3-1l2 .. Cv 43 85 112 180 780 ,. (The C, Factor is defined as the flow coefficient for wives, expressing the Flow rate in gai{ons per minute at 600F. water with 1.0 p.z.i. pres- wre drop actoss relve.) eL THREADED ENDS SLOW CLOSE. NOTES: l. For fire protection sprinkler systems or any fluid system where water hammer or hydraulic shock can cause damage to piping and equipment due to rapid closing. 2. Economicaily replaces cumbersome 0.5. & Y gate valves. 3. Throttling or tight shut off of most liquids and gases. .. (See compatability chart). 4. Compact, lightweight manual operator has scotch yoke design & visual position indicator. Close coupled for positive direct drive. For use with fire protection . sprinkler systems' - Approved UL Listed ? . . Approved by the New York City Board of Standards under Calendar No. 996-81-SM. MATERIAI UST ' No. Part - Materiel Spxifiwtion 1 Intlicator sincxaa i.on F0008•P -_ 2' Housing Bronze ASTM 584. 3 Boay--;- eronze^ • ASTM 584 14. Hantlle • Mall. Iron' Paioted -- 5 . DVSt St. Steei Ty e 304 6 ? DIsc Seal vilon Flourcelastomer MILWAUKEE VALVE COMPANY, INC. ?6u$terball butterfly volves 2375 South Burrell Street, Milwaukee, Wisconsin 53207 ? ? = L C• \ I)H!' ? ? ALWP: THE PIPE DESIGNED TO FIT ANY PRESSURE FITTING Newest pressure fittings on the market are designed for a leak-free installation. Allied Schedule 10 ALWP can be used with any of these fittings. This means that you are assured of a sprinkler system unsurpassed for worry- free service. Costs are substantially reduced because fewer men are required to do the job. And, since light-wall sprinkler pipe averages 30% lighter in weight than Schedule 40 pipe, it allows your truck to haul 30% more piping to the site. You just can't beat ALWP for long-range economy! Comparison of Maximum Moments ALWP vs. SCHEDULE 40 PIPE Calculated from Section Moduli & Yield Strengths ?_. ? ?rTra eSize:? ' ALWP ';'6oFiedule40`-`' ?la' ` ? 3432 inch Ibs. ' a2763 inch lbs. .?,,,r ' . ~ 6130 ' y?'4'405 ?1 ?fa" ` ?: 10423 •: tyz't ' 14574 . . , 2070 2"? ' ` 24660 ' P`19622 _e?i>: ' „=2?/z" f' 47044 ^?`?'37241 r? ' a TM "' 3' 63085 r <60343 "?' Avera e Yield Stren ths: ALWP SCHEDULE 40 PIPE ; F 60,000 PSI ,as,certrfied; ?. Y 28,00 0 to 30 000 PSI = Weldability ALWP because of its superior physical characteristics, can be assembled 6y welding with the same tech- niques as Schedule 40 pipe. Stronger than Schedule 40 Pipe Allied's ALWP provides exceptional strength for its weight. The method of manufacture increases average tensile strength of ALWP to a wall strength more than 50% greater, per unit of thickness, than representative samples of Schedule 40 pipe. The steel fully meets re- quirements for carbon and high strength, low alloy steel ASTM A568. Wall strength characteristics are func- tions of both the yield strength of the material and the section modulus. See chart, left. n "'AVailaEle on SOecial prder:' RIGID TESTING CONFiRMS ALWP SUITABLE FOR SPRINKLER SYSTEMS Suitable for Sprinkler Systems. In a 1977 fact-finding investigation, Underwriters Labora[ories, Inc. investigated the physical and fire per- -mance characteristics of a pipe with lighter-wall than ALWP These characteristics were then compared with those of Schedule 40 pipe. port available upon request.) In this investigation, File NC 576, Project 76NK9027, dated February 18, 1977, the following tests were duded: 1) Fire Tests simulating wet, dry, and deluge sprinkler system operation. 2) Flexural Tests simulating typical pipe hanger limita- ,. 3) Leakage Tests at ra±ed and five-times-rated pressure. 4) Burst Tests of both threaded and un-threaded samples. 5) Vibration Tests th "r,ht-wall and SchedWe 40 steel pipe. G_ % - Resistance. Rece-?t tests b , an internationally recognized research and testing facility, indicate AL?-1Fider pipe should have a normal resistance to corrosion in excess of 100 years. (Report available upon request.) The resu@s of - these tc::. .ndicate that ALWP is suitable for use in Automatic Sprinkler Systems meeting the requirements of NFPA No. 13-1978. .:"Approve ;i by Board of Standards and Appeals of New York Ciry under document 75-77-SA, pnnted in Bulletin No. 20, VoL LXIV." - 4 ALL INVENTORY IS STORED INSIDE Our huge 1,000,000 square toot warehouse keeps every part of our on-hand stock fully protected from weather conditions. Modern, clean, and efFicient, d is one of the finest warehouse operations in the industry. A superior product deserves the best! MADDITIONAL APPLICATIONS ? 8ecause of its superior physical characteristics, ALW P is ideally suited for use in: • hot and cold water services, • water circulating and drain- age systems. • compressed air service, • ventilation and air conditioning systems, • waste removal and slurry applications. Consider ALW P for these and other applications in mining and manufacturing. ALW P sprinkler pipe is produced by Aflied Tube and Conduit Corporation; one of the most technicaliy-oriented manufacturers in its (ield. Since 1960, when the company was founded on the basis of proprietary technology, it has grown to encompass more than a million square feet of floor space, shipping more than 200,000 tons of its producis each year to worid-wide markets. Because of its consistently high levels of on-going research and development, Allied is recognized by American industry as a dependable source of new product concepts, production techniques, and standards of service. Call theToll-Free numbers below for engineering or design assistance: ? (800) 323-7031 Ala., Ark., Ga., Ind., lowa, Kan., Ky., Mich., Minn., Mo., Miss., N.Car., Neb., Ohio, Okla., Penn., Tenn., Va., W.Va., Wisc. ? pp (800)323-8640 Del., La.. Mary., N.J., N.Y., N.Dak., S.Dak., ? TUBE & CONDUIT CORPORATION S.Cac, wash., D.C. 76100 SOUTH I.ATHRpF . HAMEV. ILLINOI$ 60426 (800) 323-7050 Ariz., Ca6f., Colo., Conn., Fla., Idaho, Maine, (312) 339-1610 OR 955-6000 Mass., Mont., N.Hamp., N.Mez., Nev., Ore., umoin U.S.A. ? T@I2x.25-Q352 RhJSland..Texas,Utah,Verm.,Wash.,VJyo. ATaL-1102-1 ens isorn ALLIED XL PIPE Manufactured in sizes 3/4" through 3", is a threadable light wall steel sprinkler pipe engineered to provide lower cost sprinkler protection without sacrificing required service life. ALLIED XL PIPE meets NFPA 13 and NFPA 13D and is approved by jurisdictional authorities across the country. The product was investigated under NFPA 13 3- 1.1.5and carries the Underwriters Laboratory listing. ALLIED XL PIPE offers more consistent physical and chemical characteristics, and can be used either threaded or unthreaded in •wet, dry, preaction or deluge systems having working pressures of 300 p.s.i. or less. Distinctively unique to Schedule 10 and Schedule 40, ALLIED XL PIPE offers the advantages of both conventional products. In addition, the esthetically pleasing, clean, galvanized exterior of ALLIED XL PIPE gives retrofit appeal. CORROSION RESISTANCE Through examination of existing Schedule 40 sprinkler installations, Battelle Columbus, an inter- nationaliy recognized testing laboratory, conservativety projected a general service lite expectancy for ALLIED XL PIPE in excess of 100 years. The conclusions were conservative in that cafculations were done on a iinear basis and Battelie did not take into account the superior quality of steel used in ALLIED XL PIPE. In short, you can expect an ALLIED XL PIPE sprinkler system to outlast the service life of the building it protects. FLEXIBILITY ALLIED XL PIPE pipe is threaded per paragraph 3-12.7.2 of NFPA 13 which is applicable to ali threaded sprinkler pipe. This paragraph cites AN51/ASME B7,20.1- 1983 as the standard for threaded pipe and fittings used in sprinkler systems. ALLIED XL PIPE can be used with plain end and roll groove fittings, and can also be used in conjunction with weld fittings when using standard welding equipment. PHYSICAL PROPER7IES Allied Tube & ConduiYs patented manufacturing process results +n improved grain structure, superior physical and chemical characteristics, as weil as superior wall and O.D tolerances in the finished pipe. ALLIED XL PIPE maintains a more consistent tensile, yield and chemical composition in comparison to Schedule 40 pipe which has been standard sprinkler pipe. Photomlcrognphs /00% ALLIED XL PIPE Schedule 40 A53 SUPERIOR HYDRAULICS ALLIED XL PIPE is easily adaptable to a hydrauiically deslgned system. ALLIED XL P1PE provides improved hydraulics over conventional Sahedule 40 and depending on size of puter diemeter can have an 18-22% increase of water flow. This prpvides the potential for pipe size reductions while maintaining the water flow characteristics of larger diameter pipe. TESTS PERFORRAED BY UNDERWRITERS LAB FIEXURAL TEST - Simulating laading oT typical pipe and hanger installations. One inch and larger sizas xrere tested simulating sprinkler branch lines described in NFPA 13. HYDROSTATIC LEAKA6E 8 ASSEMBLY TEST - Leakage and hydrostatic tests on both contrectar threaded pipe and U.L. threadedpipe, gauged and found to conform with AN51/ASME 6120.1-1983. VIBRATION TEST - Exposure of both ALLIED XL P1PE an0 Schedule 40 pipe to vibration in arder to simulate seismic conditiona. FiRE TEST - Simulating wet, deluge and dry pipe fire exposures. BURST TEST - Hydrostatic burst tests onthreaded and unthreaded. PiPe. Typical Fire Test conducted by UlO ?T e?J COiUIPARATIVE TESTS SUMMARY-ALLIED XL PIPE VS. SCHEDULE 40 CONSTHUCTION AND INSTALLATION - UL statetl ALLIED XL PIPE is suitable for fabrication of sprinkler systems. MATERIAL$ - ALLIED XL PIPE has mechanical strength equivalent to or greater than Schedule 40. FLFJCURAL - ALl1ED Xl PIPE is equal to Schedule 40. HYDROSTATIC - Assembled ALLIED XL PIPE, threaded in accortlance with AN51/ASME 6120.1- 1983 can withstand intemal pressure without leaks in the same manner as Schedule 40. ViBPATION - ALLIED XL PIPE did not leak at or belOw 601 p.g.i., twice its normal working pressure, end did not exhibit any signs of weakness, deterioration or wear at the- threads. FlRE RESISTANCE - The mechanical and bending strength of ALLIED XL PIPE provides equivalent resistance to the stresses imposed by fire. BURST TES7 - ALLIED XL PIPE tested to 9.000 P.S.I. CORROSION RESISTANCE - Bettelle Colum6us statetl ALLIEO Xl PIPE will generafly last for 100 years or more. FIRE TEST RESULTS No leakage was noted during the postfire grid pressurizations. None of the pipe exhibited cracking or thread damage. RETROFIT INSTALLATION The comparatively lighter weight and adaptability of ALLIED XL PIPE makes it ideal for retrofit installation. Further, its attractive exterior and fire resistance mean it can be installed exposed. It is temperature resistant and has the same capability to withstand mechanical abuse as does other Four fire tests were conducted using exposed ALLIED XL PlPE repreaenting a typical sprinkler systam contiguration as illustrated below. FIRE TEST GRID ze? ?- rc ? FIRE TESTS Mmimum Air Meximum Pipe Teat Frea 8um Temperature Tampereture No. Fim Type MIn:Sec Degrees F Degrees F 1. Wet System Test StaMard Wootl Crib Fim - 1100 500 2. Wet System Test StanOarO Wood Crib Fire - 1320 350 3. Dry System iest . Stantlar0 Woad Crib Fim 200 1835 815 4. Dry System 7eat . Nortnal Heptane Pan Fim 1:15 1780 425 TM rmults ot tnoae leyts are liataE bB1ow. steel pipe. ALLIED XL PIPE is resistant to meehnical damage and can be used under working pressures up to 300 p.s.i. • Standard coupiings, fittings and valves are used with ALLIED XL PIPE. There are no special processes or adhesives required for installation. • Recommended painted finishes can be applied to the pipe. Recognizing the positive impact that fire sprinkler installations have on the improvement of life safety and the reduction of property loss, ALLIED XL PIPE offers excellent Fire Sprinkler System integrity with major economic benefits. I 1 U ?. ALLIE -5?a ? T3?0PF ? i? HoRN ? LIGHT ?? AW qae /1wk ' gole?? I'm 0=,"a A1.1Cl1b1@ - V151b1@ COSTS LESS THAN ANY WATER MOTOR GONG - MOST ELECTRIC GONGS COMPLETELY DISTiNCTIVE FROM ANY OTHER ALARM SIGNALS <F M> FAST, EASY MOUNTING - ON ALL TYPES OF WALLS 115V. AC-RECOMMENDED SY FACTORY MUTUAL FULLY GUARANTEED - MAINTENANCE•FREE OPERATION APPROVED FOfl USE IN ALL HARD-OF-HEARING OCCUPANCIES WEATHERPROOF CONSTRUCTION - FOR EXTERIOR AND INTERIOR USE S? ?? to Water stained walis Ugly signs to spoil esthetics 716 HL64E Old-fashioned belts Pipes that clog and freeza • ?e 6 ?MI fmtl AZItOIr1QtIC F9RE-'TROLS I N C 0 R P 0 R A T E D MINNEAPOUS, MINNESOTA ? I W (.i.,UL?T FEATURES • RECESSED AND PENUENT AVAILABLE AS ADJUSTABLE AND NON-AOJUSTABLE. CONCEALED 13 ADJUSTABLE ONLY. • 11/2" ESCUTCHE4N ADJIlSTMENT ON NON- ADJUSTABLE QRY PENOENT SPRINKLER. ,F? • ADJUSTABLE VERSIONS PROVIDE ADDITIONAL 2" ADJUSTMENT. • EMPLDYS ATTRACTIVE CENTER STRUT, LEVER AND SOLDEfl CAPSULE PRINCIPLE. • LENGTNS AVAILABLE TO ACCOMMODATE ANY DESIRED INSTALLATION DIMENSIONS FROM 2" TO 36". • AVAILABLE iN A VARIETY OF FINISHES. • UNOBSTRUCTED WATERWAY. • SPftINKLERS MAY BE IN3TALLED AfTEH INSTALLATION DF CEILING. • ADJUSTABLE IN A PRESSURIZED SY3TEM. • LISTED BY UNDERWRITERS LABORATORIES, INC. APPROVED BY FACTDRY MUTUAL RESEARCH CORP. • U.S.PATENTS: 4,228,858 4,237,982 PRODUCT DESCRIPTION All Reliable Model G3 Automatic Dry Pendent Sprinkfers utlli2a the center strut in compression principl8 of cc7tistruction wMich cohtrols the valve mechanism at the inlet end. This valve seals water ., ? and air from the sprinkler pipe until the sprinkler • is activated. At this f+me, water flows unobstruc- tediy ihrough the sprinkler and is distributed by the deflector. PENOENT ADJUSTABLEPENDENT RECESSED CONCEALED The Model G3 pry Sprinkler is available in an adjustable version which cAn accomrhodate plus or minus one inch adjustment after installation in addiiion to escutcheon adJustment. This ver- sion as well as the economical fiixed is also avail- able in recessed and concealed types in a variety of finishes. DENT SPRINKLER Non-Adjustable 2"to36" Sprinkler Max. Temperature Rating Frame Color` Ceiling Temp. 135°F (57°C) BlackStripe 100°F (38°C) 165°F (74°C) Uncolored 100°F (38°C) 212°F(100°C) White 150°F (66°C) 286°F(141°0) Blue 225°F(107°C) ' Frame color does not apply to chrome p/atetl sprinklers Note: Sprinkler cup protrudes '/e " when escutcheon is in nominat position, To minimize cup proirusion for the non•adjustable sprinkler, order the next smaller "A" dimension. =CESSED SPRINKLER Non•Adjustable `•A„ Dlm. 45la" to 355/e" Sprinkler Maz. Temperature fiating Ceiling Temp. 135°F (57°C) 100°F(38°C) 165°F (74°C) 100°F(38°C) 212°F(100°c) iso°F(ss°c) ESCUTCHEON INSTALLATION WRENCH: Reliable Model FEA Flush Sprinkler Escutcheon Wrench TECHNICALDATA Orifice Size: 1/2 " ThreadSize:7 NPT Working Pressure: 175 psi "K" Factor: Up to 18": 5.7 non-adjustable 5.6 adjustable 19" to 36": 5.5 non-adjustable 5.4 adjustable Note: 38" max. U4Listed and FM Approved length. ORDERING INFORMATION Specify: 1. Sprinkler temperature rating 2. Sprinkler type (select one) . Dry Pendent Dry Recessed Adjustable Dry Pendent Adjustable Dry Recessed Adjustable Dry Concealed 3. Sprinkler finish 4. Escutcheon finish (where applicable) 5. Cover Plate finish (where applicable) 6. Length, eitheY: "A" dimension for non-adjustable (face oT tee to to face of ceiling) in'h " increments "C" dimension for adjustable (centerline of tee io face of ceiling) in Yz " increments r SYSiEM TfE ; •----"'+ ---` 1 I ,- ??I"NPT •,A'•DIM. ? I I RVB'DIF.NOLE FOLLAOJUSTMENT ? INCELLiNO HANGE * Y<' 143081. I OEil'xc -7 I I ?I ??ypPINKLEFCUV eswicneox eo?'- . ? I ESCUiCnEON AOJr oenu_+o NOMINAL p051TIOH Lk ?' ?6' OFESCUTCNEOH : a? oia NON-ADJUSTABLE -SYSTEM iEE J` ? 1' NPT I ••A••PIM I ]11?'OIR.HOL 1lLAUJUSTMENT InCEaiNG FANGE ! iN' y yIe' UtA? I _f/vESCUYCMEON.CJI _? ? CUPASST. I I ? ceiueo ? ceiuxa _•, NDMINALYOSITION ExuicXEOnI (I OFESLUTCNEON ?1?-a•ou.--.l NON•ADJUSTABLE LOCNih • . OPERATION ? When the sprinkler has been fused, its operating partspring away allowing the spring-loaded inner tube to -nove toward the sprinkfer head refeasing the locking balis. The inlet seal is now free to be expelled through the sprinkler head permitting an unobstructed flow of water. The hidden advantages. ? IYs what you don't see that makes frangible glass bulb contains a special Reliable's Designer II so beautiful. Buid which is thermally sensitive. As the Because this new sprinkler is next to ambient temperature rises, the fluid invisible: expands, exerting pressure against the Designer I[ features a smooth glass bulb. At a predetermined contoured escutcheon with a subtly temperature the bulb will burst, rounded edge. Listed by UL and discharging the water. approved by FM, Designer II's special, Designer II's biggest surprise is the two-part construc6on permits easier price. It costs far less than flush, and less costly installation. Now you concealed or can fit and test your sprinklers before standa you finish the ceiling. 130 But don't let its low profile deceive you. Reliable's new sprinkler is - constr-ucted with all the tough safety features of older, bulkier models. The recessed spnnklers Available in all the colors, finishes and ; plated finishes needed to complement - - ? your decor Erigineenng, ?Economy Elegant goal ,: , ? .: ? ? look`s:: This is ttie list of advantages that ?=.` ?, ; -- makes Designer II the obvious choue _ of both architects and Cesigners: ,.. k . . . . .. t. ?. - v ? - • x L 7?' ? - ? Speeifications. MAXUvRJM CEtL.INC 7'EM19'F.RA1l1RE AS FtECOIvMFNDED BY NO'IED AU7}IORRY - SPRiNR7FR BULB NFPA „5tP . CIASSIFlCATION 7F.MI'ERA7IJRE R4TWG COLOR FRAh1E WLOR (Pamphlet 13) . . ?C -p (.45Required) °C. °F - Ordinary 57 135 Orange Uncolored 38 100 Ordinary 68 155 Red Unrnlored 38 1 W ? Intemtediare 79 175 Yellow White 66 150 . Intermediate 93 . 200 Green White 66 150 ?ti 0 S t ? 4 . . ? i ? _. . -. .., . ... a N . ,:s .. :. i t .:? „ }5.., y ? . . . . -,? SPRN?aF.R FINI SFn ma . ESCUI'CF?ON FINLSHES ` ` ?- Bronze - BrightBrass 8nght Brass Satin 8rass.i ? BrightChrome BrightChrome ThQ GFI ReL•eSSed . Satln Chrome Satin Chrome. ? - . White For even greater economy • k `. tfi„ K 5 62 ; , v, e"K 424,???: ??.. NPT ? - 254 . ? WK 2.82 [VPI`' . ?` 254„ . ; ;Underwriters labora[ories, N.Y.C.,HS. & A, (No.587-75•SA) I/Y" Pentlent 135°F 155°F 175°F 200°F as abouttheGFI - Factory Muhial, Underwri[ers, [aboratories of Canada Reliab1'?le's center sh-ut . '' These design sprinkers are to 6e itutalled in accordance with ihe latest pu6lished Standards of the National Fire -5]7111TtV2C lIl a C?e$S2C? ? Protection Associatioq Factory Muhial Research Corpomtion, or other siatilar orgardaations and also with the -? provisioas of govemmental codes or ordinances wherever applicable. eSClltu teoCl. ? • UPRIGHT PENDENT PRODUCT DESCRIPTION The Reliable Model G Automatic Sprinkler utilizes the center strut solder in compression prlnciple of constructian. The fu- sible alloy is captured in the cylinder of the solder capsule by a stainless steel ball. When the fusibie alloy melts the ball moves into the cYlinder allowing the cylinder to fall away from the sprinkler. When lhis happens, the lever is released to spring free from the sprinkler so that all of the operating paKS clear from the waterway allowing the deflector to distribute the dis- charging water. Except for the parts in the cylinder as mentioned above, the sprinkler components are made from copper based alloys tor maximum corrosion protection. Lead plated, wax coated or wax over lead plated sprinklers are available for specially severe environments. Chrome plated sprinklers are availabie for dec- orative purposes. . All sprinklers are individually hydrostatically tested and ail sprinkler inlet threads are teflon taped to insure leakproof joints when saewed into fittings. All sprinklers are identified as to their fusing point by markings that appear on several of the operating parts and by an identi- fying color that appears on the frame. SPRINKLER TYPES STANDARD UPRIGHT - This deflector configuration is nor- mally used with exposed piping insiallations. Water is ?distrib- uted laterallY and downward in a widepattern approximating a hemisphere which is completely and uniformiy filled with water in the form of small drops or spray. At a sprinkler height of 10 feet, a circular area of approximately 20 feet in diameter is covered by the water discharged at the minimum pressure. STANDARD PENDENT - This deflector confiiguration is nor- mally used where the space above the piping is not adequate or where a concealed piping installation is employed. The dis- charge characteristia of the Standard Pendent are virtually identital t0 the Standard Upright as descri6ed above. ' Pzron, Pe.^^_'inn SMALL ORIFICE UPRIGHT (With Pintle Screw) LARGE AND SMALL ORIFICE - By varying the orifice size, a Iarge or small orifice sprinkleris created that will distri6ute as much as 40% more water or 65% less water than the normal 'f." orifice sprinkler. These sprinklers are identified.by the oriFice size that is stamped in the 6ase of the sprinkler and 6y the pintle that eutends from the deflector - Yhe exception is the Large Orifice Spcinkler with tfie '/:' NPT inlet thread where the size of the inlet is sufficient to classify this sprinkler as one having a larger than standard orifice. CONVENTIONAL--This deflector configuration is used pri-marily ir those countries where the F.O.C. installation rules have precedence. The sprinkler is designed io distribute a por- tion of its water discharge upward against the ceiling with the balance downward. It may be instailed in either the Upright or the Pendent position. Sprinklers with conventional detlectors are available with orifice sizes corresponding to ligfit, ordinary and exira-high hazard ir.staltations. APPLICATION AND INSTALLATION Standard sprinklers are used in fixed fire protection systems: Wet, Dry, Deluge or Preaction. Care must 6e exercised that the orifice sizes, temperature ratings, deftector stVles and sprink{er spacings are in accordance with ihe latest pubfished standards of the National Fire Protedion Association or the approving authority having jurisdicYiort. , The sprinklers must 6e installed with the Reliable Model D Sprinkler Wrench. Any other type of wrench may damage the sprinkfer. Installation and sale of automatic fire sprinkler sys- tems utilizinq equipment manufactured bY Reliabie is per- formed by a worid-wide network of installing distributors. Consult the Yellow Pages under "Sprinklers-Automatic Fire", or write to us directly. The approval or listing of Reliable Automatic Sprinkiers by major approving organizations are shown in the,tabulated list provided on the back of this bulletin. CONVENTIONAL . MODEL G INSTALLATION DATA SPRINKLER TYPE "K" FACTOR SPrinkler US Metric Hei ht Approvals S7ANDARD - UPRIGHT (SSU) and .°ENDENT (SSP) Deflectors Marked to Indicate Position 1/2" Standard Orifice with 112" NPT (15 mml Thread 5.62 81.0 2 7/8" 73 mm 7, 2, 3, 4, 5, 6, 7 7/16" Small Orifice (11 with 1/2" NPT 115 mm) Thread 4.24 61.0 3 3/16 1, 3,7 3/8" Smail Orifice li I with 1/2" NPT (15mm) Thread 282 40.6 3 3/16 1, 2, 3, 7 5/76"Small Orifice(i l with 1/2"NPT (75mm) Thread 1.98 28.5 3 3116" 1, 3,7 17/32" LargeOrifice (i)with 1/2"NPT (15mm) Thread 7.96 714.7 3 3J76" i, 2, 3, 7 17/32° Large Orifice with 3/4" NPT Thread 8.20 178.2 2 21 /32" 1, 2, 3, 7 20mm XHH with 20 mm Thread 8.20 718.2 75.4mm 4, 5, 6 tOmm XLH with tOmm Thread 4.10 59.1 73mm 4, 5.6 CONVENTIONAL- Insialled in Uprightor Pendent Position 10mm XLH with lOmm Thread 4.10 59.1 73mm 5 15mm Standard Orifice with 75mm Thread 5.62 81.0 73mm 4, 5 20 mm XHH with 20mm Thread 8.20 178.2 75.4 mm 4, 5 (i) Identified by pintle extending above deflector Sprinkler Height includes pintle extension APPROVAL ORGANIZATIONS: t. Underwriters Laboretories, Inc. 2. Factory Mutual Research Corp. 3. Underwriters Laboratories of Canada 4. Fire Offices Committee 6. Verband der Sachversicherer TEMPERATURE RATINGS 5. Pleniere Assemblee CLRSSIFICATION SPRINKLER RATING MAXIMUM CEILING TEMPERATURE FRAME• COLOR oF oC oF oC ORDINARY 735 57 100 38 BLACK OROtNARY 165 74 tOD 38 UNCOLORED INTERMEDIATE 212 100 150 66 WHITE HIGH 286 141 225 107 BLUE 7. N.Y. City, B.S. and A. Na 587•75-SA.:. -` - ?-- :- . Frame Color does not aDOW to [hrome plated sprinklers - Use spriakler rating ... . . .: ... .. . ` 4 -'' ' FINISHES.. . '.. ? .. . -?.-> asidentifiedonoPeratin -'. . gParesasshown6elow..=.:,>:r. .s._-,.... NATl1RAL BRONZE - All Temp. retings - - oEPLecTOti BRIGHT CHROME PLATED -All Temp. ratings IUpriqnt} `_ • _ SATIN CHROME PLATED - All Temp. ratings LEAD PLATED - 765°F, 212°F & 286OF ratings CORROPROOFED - 165°F Clear Wax, 212°F Brown Wax, 57pu71wien tevER ? CORROPROOFED - 165°f Ciear Wax, 212°F Brown Wax, ? - cemaeramre ardyear y OVER LEAD PLATED iden[ificationl _. , . „ ? io ENAMELED - Subject to Acceptance by Authority having `E Jurisdiction. Not Approved by Officiat d MAWTENANCE Approval Organizations. 1?` SOLDERCAPSULE (with teTpereture Sprinklers should 6e inspected regularly for any physical damage, dust, " and year - identifiwtian) corrosion and paint (other than the identifying frame color). i N N ?5?. ? eversuspend any ote: tems (signs or decorations) from the sprinkler5. FRAME . - All automatic sprinklers should be replaced after 50 years of service or CQP before if they become painted, corroded or otherwise damaged. -' Once fused, automatic sprinklers cannot be reassembled and reused. INIET THREADS New svrinklers of the same size, type and temperature rating must 6e installed. A cabinet of replacement sprinkler. should be provided for this purpose. Use only the speciaP sprinkler wrench provided by the UPRIGHT manufacturer for sprinkler removal and installation. Any other type of wrench may damage the sprinkler. - '? The epwpmem presented m tnis Dulletin :s to oe mstaue0 in acCOrdance witn Ine lates[ publisnetl standarOS ot tnse : vational Fire Prmection Associatioq Fectory MuWal Researcn Corpore[ion. or other Similar organizabon5 ana also wim tne provisions oi govemmemalccoe s or or0inances wnenever apObcable. THE RELIABLE AUTOMATIC SPRINKLER CO., 1NC. 525 N0. MAC QUESTEN PARifydAY, i;"w3llNT VERNON, N.Y. 10552 12 -e2 71i2%1 (e) vawrEo w u s.a . ' (914) 668-3470 October, 1980 20E-12-2 VANE-TYPiE V!/ATERFLOW DEi'ECTOtt SERIES WFD Installed on main risers to give a system waterTiow signal, or on feed mains supplying sub-risers or cross mains to give a sectional waterflow signal. They also are installed on cross mains or branch lines to give a waterflow signal by zone or area. Normally this type of piping is found in: 1. Warehouses 2. Large buildings 3. Industrial piants 4. Industrial storage 5. Aircraft hangars 6. Retail establishments 7. High-rise buildings Compatible with any appropriate control panel to: 1. Operate local alarm signals (Bell at Riser) 2. Indicate signals on annunciator panels 3. Trip a municipal fire alarm box ? 4: Start fire pumps 5. OR ANY OTHER FUNCTION THAT CAN BE INITIATED OR CONTROILED BY THE OPEN- ING OR CLOSING OF A SWITCH CONTACT. OPERATION ` When a flow of water occurs, the vane is deflected actuating the control linkage to the switch. The control linkage incorporates a pneumatic retard element to prevent false signals from being given by transient ilows caused by fluctuating water pressure. The retard element is adjustable from 0 to 70 sec- onds and is instantly recycling so that a sequence of flows, each of less duration than the predeter- mined retard period, will not have a cumulative effect. A factory adjustment provides for a retard seiting of 20-30 seconds on ali standard detectors. Other retard settings within ihe 0-70 second range may be accomplished by field adjustment. ' 2-SPDT circuit switches provide isolated alarm and auxiliary contact functions. CONSTRUCTION S?\ RV? WFD vane-type, waterflow detectors consist of: 1. A vane operated pneumatically retarded switch assembly, mounted on an aluminum base plate. 2. A cast aluminum pipe saddle to which the base, plate is attached. 3. A steel U-bolt to clamp the saddle io the sprinkler piping. 4. The retard switch assembly can be removed and replaced without depressurizing the sys- - tem. 5. The switch assembty is enciosed in an impact ` resistant cover. Installation is by cutting a circWar opening through ` the pipe wall at the selected location. The hole is sized to permit the polyethylene flexible vane, which is rolled up to a suitable dimension, to be inserted through the opening into the waterway. Vanes are marked for field trimming for use in heavy wailed pipe sometimes used.in high rise buildings. The pipe saddle is tFien secured to the piping by' means of the U-Dolt. The required hole size is 1Y4 + 1/16-0 inches for 2, 21/2, 3 and 31/2 inch detectors, or 2-F1/16-0 inches for 4, 5, 6 and 8 inch detectors. Morizontal or vertical mounting._. . ; ? ENGINEERS SPECIFICATtONS Vane-Type Watertiow Deteclors shall 6e installed on the ?f sprinkler system piping as designated on the drawings and/ or as specified herein. Detectors shall be designed for movnt- ing on either vertical or horizontal piping, but shall not be mounted in a iitting or wiihin 12 inches of any fitting that changes the direction of waterflow, and shall have a sensi- tiviTy setting to signal any flow of water that equals or exceeds the discharge from one sprinkler head DetecSOr switch mechanisms shall incorporate an instantly recycling pneumatic retard element with 8n adlustable range oi 0 to 70 seconds. Switch0s snall be actuated by a polyethylene vane extending into the waterway of the pipinq. Detectors Shall provide a Yz inch conduit entrance. Vane-rype Water- flow Detectors shall be Underwriters' la6oratories listed and Factory Mutual Approved. _ , n .:.„,., ? ,?,-.:., ?ry?a h. .. .,-..,., . . Y,.*?.'m...? ? . . . .... . . . .::. v.: .. . ...,. , x r,.. r.. AYYLIGA 1 I V N Designed to signal any waterflow condition in a wet-pipe sprinkler system that equals or exceeds the discharge from one sprinkler head. Such flow may be due to fire, leakage or accidental rupture of the piping. _u 99 0 .. ? ? CLE ? PN[ SCM FOF ONE ? DMMUEF sioi ? ? .A . &?. CO. ? ? ? . ?' .. 4 li PLATE JLE Vane-Type Waterflow Detectors cannot be used in dry-pipe systems, deluge systems, or pre-action systems, because the vane and mechanism may he damaged by the sudden rush of water when the control valve opens. A pressure actuated type de- tector should he used on these systems. I.I.L. SWITCH RATINGS - Switches are derated 50 percenY of standard rat- ings for fire alarm applications. 125 Vac-7.5 Amps ' 250 Vac - 7.5 Amps 480 Vac - 7.5 Amps 600 Vac -1 Amp 0-125 Vdc - 0.25 Amp 250 Vdc - 0.125 Amp • ORDERING INFORMATION VJLYE V, IRMETEii svr STATE OF CALIFORNIA LISTED T770-028:32 U.S. PATENT NO. 3,845,259 OTHER pATENTS PENDING .? i1MER SWITCH I ACNATOR GOLLAR O ? PETA0.0 APIUSTMENT 0.14L ACTIIATOR I -DIRECiIOH OF FLOW ARROW q P.OLL PADOIE TO TNS?E(RT iNTO PIPE ? wOLE vANE PDLYETNYLENE PIPE 546-7020 WFD-2 Waterflow Detector 546-7025 WFD-21/2 Waterflow Detector 546-7030 WFD-3 Waterflow Detector 546-7035 WFD-3Y2 Waterflow Detector 546-7040 WFD-4 Waterfiow Detector 546-7050 WFD-5 Waterf low Detector 546-7060 WFD-6 ' Watertlow Detector 546-7080 WFD-8 Waterflow Detector 546-6000 T= Tamperswitch Kit Option 109-0100 Cover Wrench (one included with each WFD) } Shipping weight va ries from approximately 4 Ibs. ? to 7 ibs. according to size. SWITCHES 1 • MAY 1974 20E-16-1 SUPERVISORY SlN6TCHES for OS & Y GATE VALVES (SERIES N6V) ' & INDICATOR POST VALYES (SERIES NIP) Designed for supervising abnormal conditions of water valves, Instalied on the post of PIV valves (NIP SERIES) or on the yoke of outside-screw-and-yoke of OS & Yvalves (NGV SERIES). Compatible with most 2 inch and larger rising stem-type valves only. 1. City water suppiy valves 2. Sectional control valves 3. Wall indicator post valves-NIP ONLY 4. Sprinkler riser control valves-NGV ONLY OPERATION NIP SERIES The NIP series switch is mounted on a valve with the actuator arm normally resting against the movable target indicator assembly. If the normal position of the valves is altered, tlie valve stem moves, forcing the actuator arm to operate the switch. The switch is so designed that it will oper- ate behveen the first and second revolution of the valve control wheel. When the stem has moved no more than one-fifth of the distance from its nor- ? mal position it will operate. The switch wili aiso give a TAMPER INDICATION if the unit is removed from its mounting or if the housing cover is removed. NGV SERIES When the switch is mounted on a vaive the actu- ator arm normally rests in a notch filed in the valve stem. If the normal position of the valve is altered, the valve stem moves forcing the actuator arm out of the notch and causing the switch to operate. The switch is so designed that it wilf o¢erate between the first and second revolution of the valve control wheel, when properly in- stal led. The switch will also give a TAMPER INDICP.?ION 178-0040 if the unit is removed from its mounting or if the ' housing cover is removed. 100-3860 Series NGV CONSTRUCTION Series NIP NIP and NGV both have the same following con- struction features. Die cast aluminum housing is finished in red 6aked enamel. "O" ring weatherproof seal, between cover and base, permits indoor or outdoor installation but it is not designed for submersible operation. SPDT circuit switch is under-rated at one amp. 125 volt A.C.-25 amp. 24 volt D.C. UNDERWRITERS' LABORATORIES LISTED. (R FACTORY AflUTUAL APPROVED. ORDERING INFORMATION r- Model No. Deseriptlon 1VIP Indicator Post Valve Supervisory Switch. 100-2300 'h" NPT Mounting Nipple (one in- cluded with each TRP) OS & Y Gate Valve Supervisory Switch Mounting Brnclcet (one included wit6 eac6 NGV) ?/z" NPT Bracket Nut (one includ- ed wiW each NGV) 1/a"-20 x %" Bracket Screw (two included with eacL NGV) NGV 140-7200 ENGINEERS SPECIFlCATIONS (Indicator Post Valve Supervisory Switches) or (Gate Valve Supervisory Switches) shall be instalfed on each valve as designated on the drawings and/or as specitied herein. Switches shall be mounted so not to inter- fere wjth the normal operation :;f the valve -, and shall be adjusted to operate ?n+thin two ? revolutions of the valve control or when the stem has moved no more than one-`ifth of the distance from its normal pcsition, The mechanism shall be contained in a weather- proot die cast aluminum housing, which shall provide a 3/a-inch tapped conduit entrance and incorporate the nocessary facilities for attachment to the valve.. Switch housings shall be finished in red baked enamel.. The switch mechanism shall have a minimum rated capacity of one amp. 125 volt A.C.- .25 amp. 24 volt D.C. The entire installed assembly shall be tamper-proof and arranged to cause a switch operation if the housing cover is removed or if the unit is removed from its mounting. (Indicator Post Valve Su- pervisory Switches) or (Gate Valve Switches) shall be Underwriters' Laboratories listed and Factory Mutual approved. e ? ,A _ U ? ? ...e.. ? % - SAfE1Y FACiOR Oi 5 • ADIUSTABLE SWIVEI RING • MODEL 151 • SIZE RANGE: !;` Nro8" • MATERIAL Low Carbon Shel • ADJUSTABLE SWIVEL RING - MODEI 141 • FINISH: Pre-galranired • MA%IMUM iEMPERATURE:650°F APPROYAIS: llnderwnters laboratones. Inc. listetl and Factory Mutual Aesearch Corporation approve0. Complies wun Federal Spealication riW-H.lli iTYPe 7D) and Manuia[tures Stantlardaatmn Souefy SP-69 . (TYP¢ 10) SERVICE: Recommended for susDension of noroinsulated. siationary pipelmet. fEAiI1RE5: DesigneE to meet NFPp mtmmum md uzes. KnudeA insert provrdes veNCal adlusiment whde piping is m place. LimitS rodinven[Dry to 3,e" to I/;°. OROEFING: Specily pfpe vze, moGel number, name. - l11YFYUffu< lu m PIPE SIlE A B WT.PEA qAX. F, M N P 1DOPCS. lOAD ?: 'a 13,. l';e 25s 3i1 IB Ga.z si lOq 400p ? ;F l???is f?is 2ie 3+j6 I8G0..x5i ]Dk 400# 1l116 25, 35,?6 18 rJt. M 11N 400# 1'116 1I,16 '11116 3)1?16 Ig CJ1. Ik0 12a Q0? I'^ ?e 2§is li" 3S8 4iy 18G0..i?-a I3p 400p 2 ? 21,16 P 3?'?, 49,i6 18 GA. i 5{ ]AR 400# 21: 'e 23,i 134 3'i 5 13 GA, i??, 29# 600N 3 ''? 3?re ]3re 4 4i 6?/? 73 GA. x 32N 600i! 31a 's 3yz 11:i 45', 6`:y 13 GA. x?i? 34N bppp d ?•e 3?• lst 4'?i 7!y ll GA. x 45q 1000A` 5 a', 1'6 5'i B1i i l G0.. x 37N 1000k 6 'a_ 54i Z?L 6 10y? I 1GA. r 1" 85q 1250p 8 ?? 7 2?i 8?h 124e i] 6A. x 1" 110N 1250q • S12E.RANGE:'ie" ihru 8` . FINISH: ElectraZino-Plated • YATERIAh low Carbon Steel -- MAXtNUp TEMPERAiUAE: 650°F APPROYALS: Underwnters Laborotones, Inc, 6sted and Factory Mutual Research Corporation appmved. Complies with Federal Specitication WWHll1D (iype 10) and Manulactures Standardi.ation Sociery SP69 RYOe 10). SENYICE: Recommentled tor suspension ol nominsulated, stahonary pipelines. fFAiURES: Knuded swiuel Ormides vert¢al adju:iment while pipe is in Olace. Raised nubs at bottnm of bana pmvide eaziet st+aing and turmng of pipe. Umversal adapia611ity permits lower hanger inventory. ORDEkINC: Spttify pipe s¢e, model numper, name. DIMENSIONS IN INCHES PIPE SRE A 8 E p N P WT. PER 100 PCS. YAX. LOAD 1!2 2;; 31,y 15G0.x? Iik 400u ?i ?4 1"/?? 13/?F 25,, 3y6 16 CA [% I IM 400p 11 T6, 2% 35',? 16GA.x% 1201 QOOq I'p 14is 21;is 31116 16GR.x% 13+Y 400p 2$, 1y, 3?j d? 16GA.z% 1401 OOOq z 1 2'i16 I 33?16 16 CiA. % x 15# 400# 1'a 31ti 5% 13 GA. x 348 600R 3 3?j 13,e 4y, 6'a 13 GA . ;: 36# 600N 3''> 45, 651 13 GA, x y, 40M 600# < 'y 31 lt? ?v?E 4'Y?, ti cn : y, wn toooa 4's in 59q6 8yi ll GA. x y? 66M 1000N 5i; 2)i:c 6'ie , 1D1,6 li GA. x]" 115M 1250p 7 21 y, 83i 12?ii 11 GA. z t" 135k 1250A 5Ai[tY fFC10N5 Of 5 ? M f • , vF FN ??? O '°` SEC110N 1/P4CE ! `J X/ictaulicR PRODUCT DESCRIPTION SUBM'17AL V6 Ctal,l lI'C STYLE 718 THREADED CONNECTIONS ¦ ?Oda? ???Y/1! iM Alarm Test Module Victaulic's new Style 718 TESTMASTER is the compact alternative to traditional alarm test loops. TESTMASTER's unique design includes a durable ductile iron body with 11/4" NPT (threaded) inlet and outlet. Features include a combination sight-glass/orifice, bronze top works, and 175 PSI pressure reting. Style 718 offers a?%:' NPT plug for attachment of a gauge, or as a convenient way to connect a water hose for pressure testing. TESTMASTER's compact design eliminates up to 21 connections normally used in traditional fire protection system test loops FOR USE ON FIRE PROTECTION SYSTEMS DIMENSIOiVS-WEIGHTS-PERFORMANCE INLET SIZE OUTLET SIZE DIMENSIONS INCHES WORKING APPROX. PRESSURE I N?, INCHES INCHES V X Yy Z pgI ?gs 11/4 FPT 11/4 FPT 2?/a 11?/z 127/s 61/a 175 8.5 'Dimensions reflect both valves in fully opened position. . MATERIAL SPECIFICATIONS Housing-Aiarm Test Module Ouctile Iron ASTM 536 Valve Bonnet Assembly Bronze, Com. with Aluminum Handle - Teflon Stem Packing, and EPDM Seats Sight Glass Acrylic Orifice insects Screw Oring Sq. Hd. Pipe Plug Aiuminum or Plastic Steel, Gomm Zinc Plate Nitrile, UL Listed '!a" NPT - Cast Iron - Com. PATENTS PEND. YictaW{c Company of Amenca reserves Ne rigM ta change protluet specificaNons, tlesiBns and etandaM equipmeot without notice anC w%hout Vncuning oh{igat4on. Thic pmduct shali 6e manuFacturetl by Victaulie Compairy ot America tat the job liated below. Any changes or au6stkutions mus[ be presanted entl aVPmvetl M separete submtttnl. All Droductsto Ce insTSllad in accordance with curteM Vietauiic instaRStion/assam0ly inSWCtions. JOB/OWNER CONTRACTOR ENGINEER - ? • System No. Submitted by Approved Location Date Date VICTAULIC COMPANY QF AMERICA P.O. BOX 31, EASTON, PA 18042 (215) 252-6400 ?Coovriqht. Vctaulic. 1986 ' Reoistereo tmdemark o1 Victaulio ComDany o' America 1/86 VS 71 8 - i ?', r? ? Fig. 7000 couPLiNG O:? The Fig. 7000 Coupling is designed for appiications requiring moderate internal pressures or where weight is a factor. The Fig. 7000 Coupling is approximately 50% lighter in weight than the Fig. 7001 Coupling, and allows for working pressure ratings up to 500 psi (3.4 MPa) 11 Fig. 7010 REDl1CINC Y i Z-' I i I IX I I I - i - ) ? i ITT GRINNELL • GRUVLOK Pin 7nnn rniinrna - -?- - - - -- -? ? Rang I £i sions Oi If C Cou Iln Balls Nominal Plpe Max. Wk. Max. End Pipe E d Deflectlon Irom men au n Approz. Slze O U Pre:sure Load Separatim Per Plpa X Y Z I gize WL Ea. Incbes . . Inchas P31 Lhs. Inches Coupllnp In./ft IncAea OlY Inches LbS. I mm mm MPa N mm UeArees I mm/memr Mlllimnen mm kp. 5 1 5 ? 679 A 50'26' 4 2 n I 7$ 2 Sz50 8 9 6 0 25 331 4 3. 3022 0- 95. 6 0 g 4 . . . 1y? 1.660 500 1082 0•'6 40_19, 0.91 2? ? 4 1?? 47 B 2 x2 9 50 8 1.4 0 6 32 42.4 3.4 4815 D-3.2 75.5 J 6. 107.6 . . x . . ? p 1 g? ? 1 ? ?? 0.79 65 8 3 4 47$ 2 9 z50 8 5 0.5 y q 3 ?pq 0-3 . [ F . . 5 .37 2 500 22 65 0 ? 3°-1, 0.3 44 ? 2 Sic5?0 8 9 0 9 0 60 3 3.4 8 3 .2 . . . 8? 5 2 500 32 _Zg, 4 ? 043 101 6 44 ? 2 5x50 8 9 0.9 761 3.4 14444 se 0- . . F . . . 3 ? ? ?? 0 ? Z°'3 0.43 4? ?y 4 ? 2 h 7x 6 9? 9 2' 2 ? 0 8 88.3 3.4 7 ? ? 1 5 4 . x . 1 . . 3 4.000 ? 283 6 ? 1°?, 34 0 5 7 93 2 127%x69? 9 4 3 : 7960 0.3 7 7 2 1 . . . 4 4.500 400 6362 a'G 0.67 9/B 8 8 2 -2 x2;'q 127 69 9 4.3 2 0 100 114.3 2.7 28310 0-64 55.6 1492 218 50.8 x . . 5 5.563 400 9722 0.y4 p?? 0.54 7 I 9?k 2 Z ?z3Ye 82 6 5.9 2 7 725 139.7 2.7 43264 OE.4 45.1 177.8 . 25b B 50.8 1.9: . . 6 0 8 6 210, O4 ? I 2 ?2? 6 5 3?2 750 683 2. 7 359 4 0- 8 2032 285. 50.8 1 .9 8 . 8 8.625 350 20449 o-1/? ?e,? 0.35 10?6 3 5 13;'4 2 ? 2 dz4y? 11z768 0 12.3 5 6 200 219.1 2.4 90999 0-6.4 29.1 26 . I?9.J . . Fin 7010 Rnrlucinn CeuolinO The Fig. 7010 Reducing Coupling makes it possible to directly connect two different pipe sizes, eliminating the need for two couplings and a reducing Titting. The specially designed reducing coupling gasket with a stiff center rib ures ro er ositionin For chart noies refer to page 6 ass p p p g of the gasket and prevents the smaller pipe from telescoping into the larger during assem6ly. The Fig. 7010 Reducing Coupling allows for working pressure ratings up to 350 psi (2.4 MPa). • .?. . _ ..__ . .? - - Ibmlirol Pipe Max. Wk. Mu. bdl Renpe o? Pipe End peflectlon Irom E Cau Ifn Olmentians Cou Iln Bolta - RpOraz 8ize O D Pns:ura l Load Separallm Par Plpa X Y Z Slze WL ?• ? Inches . . Inchee PSI Lbs. Incheg Coupll? InJfL Inches Q?Y Inchea L6a. mm mm MP+ N mm Oaprros mn?me?r Milllm?brs mm k0• 2x1+h 2.375x1.900 350 992 16 3?' ? S?h 1377 ? ?5 p z2 z50 9 B 2.8 13 5ox4b 60.3%48.3 2.4 4416 32 32.9 9 3 . . 2%x2 2875z2.375 350 1551 y? 1o.&T 0.32 4Y? 1og 0 8 4 152 ? ? Z ?§x2 z50 8 9 3.9 1 8 65x50 76.1z603 2.4 6900 92 27.1 . . . . . 3z2 3.SOOr2.375 350 1551 0.27 5 7y4 g ? p x ?x2? 9 1 .9 5 2 7 BOz50 88.9z60.3 2.4 6900 32 22.4 727.0 7842 . . . 3x2?/? 3.5ODx2.875 350 2272 ? ? 0.27 5 7?e ? ?5 p x2Y z63 9 1 5.4 4 2 80 z 65 86.9x76.1 2.4 10171 2 22.4 727.0 1842 . . . 4z2 4.500z2.315 350 1551 Y,6 20.311' ? ? 8? ? 2 8 2 ?x3Y. 9x55 1 3 10.9 4 9 100x50 114.3a60.3 2.4 6900 4.6 46.0 61 .9 1 3 50. . . . ? ? 5 5?5 4 ? ?12 4t ?'?, Y ? 50 8 2 1?9x93 3 6 14 OOz 6 114.306.1 2.4 tl 46.0 76 9 .3 . . . D 5 0 89 4 32d 4? i p-? 0.55 fif ? 3 W 8 2 1?9z953 41-3 2 100:80 1 1 4 .3 8 1 985 .8 4 6.0 4 .9 1 . . 6 ? 7zi. rJ ? 5 ? o Yf 4?i A p'S 36 i lfb Y667 Z54U 2 1?ixi6BA 15 7 00 12 z 7 4. 3 3 9. .4 2 B 4 9 . 60 6.6250.500 350 5567 Y, io.qq, 1.36 1 2 o t9 'i46B i3 150z100 168.3xi14.3 2.4 24771 A4 303 21 . . 6z5 6.625z5.563 350 8507 ?a,qd. 0.36 11?+1. 298 ? 2 ?x4y 1?1x769 D 14.7 6 7 150x725 768.3x139.7 2.4 37856 64 30.3 H ? 1 .D . . Bx6 B.Q5x6.625 350 12065 'i 1°-15. 0? 21 8 2 79 14Y 374?7 2y 512 p p?ia.0 ?.s 2(IOz1W 219.1z168.3 2.4 5369D 4 . . Fig. 7010 Coupling with Gasket /l ?i YIF] Working Pressure, End Load, Pipe End Separellon and Deflectfon valuee are based on standard steel pipe with stantlard cut grooves in accordance with Gruvlok specifications. For standard Roll Groove steel pipe reduce the values for pipe - end separation and deflection by 50°k. ? No equivaleni metric pipe size. ITT GRINNELL• GRWLOK U Xaminal Size Inches mm 1 1y2 -00 2 50 Z'/? 65 3" O.D. 65 3 80 3'h 4 100 5 125 6 150 C t0 E CtoGE <C to G& ,? C to E CtoE ? -C to E ? ?-- i ?- C C to TE ig.1050 90° EI6ow Fig. 7051 45° Elfiow Fig.70.52 22'h` Elhaw Fig. 7053 ilya Elhow Fig. 7055 90° Adapler EI6aw fig. 7056 45° Adapter EI6ow CenLer Appmx. Centar Approx. Center Appraz. Center Approx. Centerlo Centerto Approz. Centerla Centerto Approz. Ta Weighl To Weiphl To Weighl To Welght Groaved Threaded Weighl 6rnovetl Threaded Weighf End Each End Each Entl Each End Each End End Each End End Each Inches L6s. Inches L6s. Inches Lhs. Inches L6s. Inches Inehes Lbs. Inches Inches Lbs. mm kA. mm kp. mm kg. mm kp. mm mm kA, mm mm kp. 2'/a 0.6 1y, 0.6 15/e 0.5 1% 0.3 2yn 2%q 0.6 la 1?/a 0.6 572 0.3 44.4 0.3 41.3 02 34.9 01 572 572 0.3 44.4 44.4 03 Z% 1.1 Ra 0.8 R4 4.7 1% 0.5 2% 2% 0.9 1% 1% 0.6 69.8 OS 44.4 0.4 44.4 0.3 34.9 02 69.8 69.8 0.4 44.4 44.4 0.3 2% 1.3 7% 0.9 1% 1.0 1% 0.5 2% 2?/4 tl 1?'d 13/a 0.9 ?.B 0.6 44.1 0.4 44.4 0.5 34.9 02 69.8 69.9 0.5 44.4 44.4 OA3?/a 1.9 2 1.5 17/a 15 1% 1.3 3'/a 4ya 1.9 2 3 1.3 82.6 0.9 50.8 0.7 47.6 0.7 34.9 0.3 82.6 106.0 0.9 50.8 762 0.6 Ra 3.1 2'/a 2.0 2 1.8 tyz 1.5 33e 3?/a 3.0 2ya 2Va 2.0 952 ].4 572 0.9 50.8 0.8 36.7 0.7 95.2 95.2 1.4 572 572 0.9 4'/z 4.0 2'/z 2.5 - - - 114.3 1.9 63.5 1.7 - - - 4Ya 4.7 2'/? 3.5 2'/a 3.2 l?h 2.9 4'/a fi 47 2?/? d?4 32 108.0 2.1 3.5 1.6 572 1.5 38.7 1.3 708.0 152.4 2.1 63.5 106.0 1.5 4'/? 5.9 2}'a 4.6 21(2 4.0 1ya 2.8 4% 61(a 7.5 2?4 2'4 5.5 1143 2] 69.8 2.1 63.5 1.8 44.4 13 114.3 158.8 3.4 69.8 69.8 2.5 5 7.8 3 6.1 2% 5.3 1?4 3.3 5 7ya 72.0 3 5ya 8.5 127.0 3.5 762 2.8 66] 2.4 44.4 1.5 127.0 1842 5.4 762 133A 3.9 5? 11.8 3% 8.5 2?J? 6.8 2 5.0 - - - - - - 739.7 5.4 82.6 3.9 73.0 3.1 50.8 2.3 61h 78.1 3'/? 71.7 3?/e 82 2 7.0 6??5 6?/? 79.4 3?/? 3?? 73.1 165.1 82 88.9 53 79.4 3.7 50.8 32 165.1 765.1 88 88.9 88.9 5.9 i o.? v.u. 6?,? 18.5 3/, 12.5 750 165.1 8.4 88.J 57 8 7Y4 31.3 4?/? 79.8 374 17.8 2 10.0 Z00 196.8 142 108.0 9.0 98.4 8.7 50.8 4.5 10 9 53.0 4Y4 34.1 4% 25.0 2?/? 15.5 250 228.6 24.1 120.6 15.5 171.7 17.4 54.0 7.0 12 10 762 5% 46.3 4% 40A 2'/4 29.3 300 254.0 35.5 133.4 21.0 123.8 782 572 73.3 14 11 160.0 6 55.0 5 45.9 3% 32.1 350 279.4 72.6 152.4 25.0 127.0 20.8 88.9 10 16 12 210.0 7%Q 100.0 5 * 4 * 400 304.8 95.3 7842 45.4 19.0 101.6 18 151? 275.0 8 136A 5ih ?. 4'b * • 393.7 124.1 203.0 61.7 1391 7143 20 17'/a 347.0 9 778.0 6 * 5 * 5pp 438.2 157.4 229.6 80.7 752.4 127.0 24 26 575.0 11 255.0 7 * 6 * *Weight quofed Dn application. Contact ITT Grinnall. ? No equivalent metric pipe sixe. • FIg. 7050 LR FIg.7051 LR . W LnnO Radius Elbow 45' Lnng Radius Elha CeMer Approx. f W ht Center T Apprax. W ht Nominal To e g o eig Size End Each End Each Inchea Inchea L6s. Inches Lbs. mm mm tp. mm tp. 2 4% 2.5 2?; 1.8 50 111.1 1.1 69.8 0.8 3 9,¢ 6.5 3% 4.5 80 7492 2.9 85.7 2.0 4 7? 17.5 4 7.5 100 190.5 52 107.6 3.4 ? 6 1(!y? 28.5 S?h 17.3 iW 273.0 72.9 739.7 7.8 8 14ye 66.0 7% 34.0 200 362.0 29.9 1842 15.4 10 17ya 114.0 81h 58.0 250 4382 51.1 215.9 26.3 12 20'h 144.0 10 99.0 300 520.7 65.3 254.0 42.6 0` A ? 12 ITT GRINNELL • GRUVLOK ? L;11 Q ? C ? ?1 C to E C to E C to TE w Fig.7060 Fig.70B3 Tee Tea wlth Threaded Brench Center W Center to Naminal Canter Approx. Grooved Threaded ppprox. Size To End WL Each End End WL Each IncAes Inches L6s. Inchea Inchea L6s. mm mm tp. mm mm kp. 1 2% 1-0 2'/e 2% 0.9 25 57.2 0.5 572 572 0.4 19a 21'i 12 2Y4 2N 1.4 32 69.9 0.5 69 .9 69.9 0.6 9?/? 2?'j 2.O L 2/a 2N 1.8 40 69.9 0.9 69.9 69.9 0.8 2 3%. 2.9 3% 4?/a 2.8 50 82.6 1.3 82.6 108.0 1.3 2'/z 3'/0 4.9 3% R4 4.4 65 95.3 22 95.3 951 2.0 3" 9.D. 41h 6.0 65 114.3 2.7 -- - - 3 4%. 72 4% 6 7.7 80 169.0 3.3 708.0 152.4 3.5 3% 4;? 9.8 4'h 4?h 11.0 ? 114.3 4.4 114.3 114.3 5.0 a s iz.s s r/, 11.8 100 127.0 5.6 127.0 1842 5.4 5 5'h 21.8 5?h 5?/? 17.0 125 139.7 9.9 139.7 139.7 7.7 6 wh 26.8 6'h 6'h 26.0 150 165.7 12.2 165.1 165.1 11.8 6?/?" O.D. 6'h 26.0 - _ - 150 765.1 11.8 8 7yi 39.2 7Y4 7a 40.0 200 196.9 17.8 196.9 796.9 18.1 10 9 742 9 9 72.0 250 228.6 33.7 228.6 228.6 32.7 12 10 94.1 10 10 99.0 300 254.0 42.7 254A 254.0 44.9 14 11 150.0 350 279.4 68.0 - - - 16 12 188.0 400 304.8 85.3 18 75' 274.0 • 393. 124.3 - - - 20 17ya 339.0 500 4382 153.8 - 24 20 628.0 600 SOB.O 2841 - - - ? No epuivaleM metric pipe size. r Re ducing Te e Re ducing Te e fig. 7061 Flg 1064 FIg. 7061 Flg.1064 Sld. w/llb. ? Sld. w/Thd & Nomtnal Cemar Canter Approz. Nominal Cemer CerAer IYpprax. Slze Ta End Ta End Nlt. Each Si:e To End Ta End WL Esch Inchea Inchea Inches Lhs. Inchea Inchea Inchea Lba mm mm mm kp, mm mm mm kq. 2x2x1 3y? 3'/d 2.6 tOx10x6 9 9 55.0 5Ux50z25 82.6 82.6 12 250x250x150 228.6 228.6 24.9 2x2xPh 3?/a 3%a 2.7 1Ox10x8 9 9 647 5Ox50x40 82.6 82.6 12 250x250x200 228.6 228.6 29.3 2'hx2lkx2 R4 3a 4.4 12x12x3 10 10 65.0 65z65x50 95.2 952 2.0 3UOz300z80 254.0 254.0 29.5 3x3x1 4?Ja 4ya 7.0 12x12x4 10 10_ 68.0 80z80x25 108.0 108.0 32 300x300x700 -254.0 254.0 30.8 3x3x1h 4y4 41/d 5.3 12x12x5 10 10 72.0 8Oz80x10 108.0 108.0 2.4 3Wx300x125 254.0 254.0 327 3x3x2 4'/a 41/4 5.5 12x12x6 10 10 75.0 BOx80:50 108.0 108.0 2.5 300z300z750 254.0 254.0 34.0 3x3x2lh 4yd 41/4 5.8 12x12x8 70 10 50.0 BOxBOt65 108.0 108.0 2.6 3DOz300x2(q 254.0 254.0 36.3 4x4xi 3% 3ye 8.0 12x12x10 10 10 64.0 100000x25 95.2 952 3.6 3DOx300x250 254.0 254.0 38.1 4x4x2 5 5 10.2 14x14x8 11 11 112.0 100z100z50 127,0 727.0 4.6 350x350x200 279.4 279A 50.6 4x4x21h 5 5 11.2 14x14x10 11 11 120.0 t00x100z65 127.0 127.0 5.1 350x350x250 279.9 279.4 54.4 440 5 5 11.4 14x14x12 11 11 134.0 iDOx100x80 127.0 121A 5.2 350z350x300 279A 279.4 601 5x5x2 51 b 5'k 14.5 16x16x8 12 12 137.0 125025x5a 1397 139.7 6.8 400x406x200 304.8 3134.8 82.1 5x5x3 5'/? 5'h 16.1 16x16x10 12 12 148.0 125025z80 139.7 139.7 7.3 400x400x250 304.8 304.8 67.7 SxSxa 5?h 5?h 17.9 16x16z12 12 12 154.0 725x125a100 1397 1397 8.1 400000x300 304.8 304.8 69.9 6x6x2 6'/? 18x18x10 15'h 15'/? 208.0 150z750x50 7651 165J 12.0 ? 393] 3937 94.3 6x6x2',h 6?/? 61/, 26.5 18x18x12 15' 15'h 218.0 65 165.7 165.1 12.0 ? 393.7 3937 98.8 6?/? 6?,? 26.5 18x18x14 15?,? _ _ 80 765.1 165.1 12U • 3937 6'f, 6?h 26.5 18x18xfi 15?/? _ _ 100 r 1637 165.1 72.0 ? 393.7 6'/? 6?,? 28.0 20x20x14 171(, _ ` 125 165.1 1&5.1 12.7 500x500x350 4382 7)', Tg'4 33.5 20x20x16 17% ? _ _ x50 2OOx2OOx5O 196.8 196.8 15.2 500x500x400 /38. 8XBX3 T?}'i 7?'a 33.6 20x20x18 77?/ _ _ ZOOx200x80 79b8 196.8 75,2 ? 498 8 Sx8z4 7yn 7% 50.0 24x24x8 20 20 461.0 200x200x100 796.8 1963 221 600x600x200 508.0 508A 209.1 8x8x5 7% 7y, 52.0 24x24x10 20 20 476.0 200x200x125 196.8 1961 23.6 600x600x250 508.0 508.0 215.9 8x8x6 7% 7?'a 54.0 24x24x12 20 20 492.0 200z200x150 196.8 19A8 24.5 600x600x300 508.0 508.0 2232 10x10x2 9 9 47.0 24x24x14 20 _ 250x25060 228.6 228.6 21.3 600x600x350 -508.0 10000 9 9 48A 24ac24x16 20 - - 250z250x80 226.6 228.6 21-8 600zE00x400 508.0 10z10x4 9 9 49.0 24x24x18 20 250x2.50000 228.6 228.6 222 ? 508.0 10x10x5 9 9 52.0 24x24x2D 20 250x250x125 228.6 228.6 23.0 600x600x500 508.0 13 ITT GRINNELL• GRUVLOK GRUVLOK UL LlSTED Q BUTTERFLV 1/ALVES Gruvlok introduced the Tirst Underwriter Laboratories listed grooved end Butterfly valve In 1982. This uniquely designed valve with fusion bonded nylon body has U.L. ratings of 175 psi and 300 psl. Gruvlok Butterfly valves have low torque operation with proven high cycle life as well as befng Ilght weight. 4" l1L Valves E 5"-8" UL Valves I Aated -Body UL Listed Pressure Color Yalve 7?5 psi Bady q.2 MPaI Red Coating 300 psi (2.0 MPa) Green 21 Parts & Materials 1. Body (Nylon Coated) 4" - Cast Iron - ASTM A 126 CIASS B 5"-8" - Ductile Iron - ASTM A 536 GRADE 65-45-12 2. Retaining Ring - Stainless Steel 3. Name Plate - Etctied 4. Upper Shaf[ - Heat Treated Type 416 Stainless Steel 5. "O" Ring - Buna-N 6. Disc (EPDM encapsulated) Ductile Iron- ASTM A 536 GRADE 65-45-12 7. Lower Shaft - Heat Treated Type 416 Stainless Steel 8. Rotl Pin - Steel - ASTM A 510 9. Upper Shaft Bushing - 4" - Steel . .5.._8„ - Nylon . . 10. Retaining Ring - 5"-8" - Stainless Steel 11. Groove Pin - Steel 12. Actuator Adaptor Bushing - Steel 13. Woodruff Key - Steel 14. Actuator 15. Hand Wheel - Cast Iron ASTM A 126 CLASS B 16. Shear Pin 4", 5", 6" - Steel 8" - Stainless Steel 17. Indicator - Castlron ASTM A 126 CLASS B 18. Adaptor Plate (4" only) - Steel 19. Mount for Tamper Switch Yalve Sixe Inchea 4 5 8 8 mm 100 125 150 200 A 4.75 5.81 5.81 525 710.00 148.00 148.00 133. W B 4.62 5.85 6.96 8.91 m.oo iaa.oo m.oa 226.00 D 3.56 3.71 4.83 6.25 90.00 94.00 123.00 759.00 H 7.61 12.28 12.81 14.72 793.00 311.00 325.00 374.00 J 2.50 3.50 3.50 5.00 64.00 89.00 89.W 127.00 M 9.00 17.38 1200 . 13.81 229.00 269.00 305.00 351.00 N - 6.00 6.00 6.00 - 152.00 152.00 152.00 P - - - 7.85 - 199.00 R 7.50 9.88 191.00 251.00 Total Weipht E Lba. 22,00 43.00 45.00 50.00 kg. 20.4 227 ? ? 1111111111111111111111111 1 IWA, ITT GRINNELL • GRUVLOK GRlJVLOfC CLr4tiAP-TTM Fig. 7045 • ?'--- Y --1 T V w Female Threaded Branch • r- 2--M i =U? Fig. 7046 11 Grooved Branch The Gruvlok Clamp-T provides 0 for a branch or cross connection Z i in li9ht walt or standarG wall steel pipe. The Fig. 7045 Clamp-T has female pipe threaded branch connection and the Fig. 7046 Clamp-T has _ a grooved end branch connection. ? The Clamp-T is designed to provide a full flow and leak-tight branch outlet with working pressure Lu _.i ratings to 300 psi (2.0 MPa). Nole aimenslana Clemp-T' Dimensions Balfa Approx. Weipht Each Mominal Meximum Pipe Size Working Nole Saw Mazimum v Rua x Bnach Presaure 3i:e Olameter T U Threadad 6raoved W Y Z QtY Slze Threaded 6roaved Inchea PSI Incha: inchet Inchea Inches Inches Inches Inchea Inches Inchea Inchea L6a. L6s. mm MPI mm mm mm mm mm mm mm mm mm mm kA. rA, 2x?/?* 300 1?/? t% 2;¢ ?16 1'/? 51h 3 1 Ih-U Bolt 3.0 _ 50x75 2.0 38.1 41.3 54.0 14.3 667 381 139.7 76.2 12.7 14 2x% * 300 1Y2 1% 2Ye ?/,s 2% 1?h 5?/? 3 1 lh-U 8olt 2.9 _ 50x20 2.10 381 41.3 54.0 143 66.7 36.1 139.7 762 127 1.3 2x1* 300 1?h 1% 2 yls 2% 1% 5h 3 1 Y2-U80lt 2.9 _ 5Ox25 2.0 38.1 41.3 50.8 143 66.7 38.1 139] 762 72.7 1.3 2x1?a+ 300 2 2% 2?'?6 ?s 2?/? 2?/? 1? 7 3? 1 ?/?•U Bolt 4.0 4.0 50x32 2.0 50.8 54.0 55.6 14.3 73.0 710 38.1 777.8 88.9 72.7 1.8 1.8 2x1?{?+ 300 2 2y? 2716 Y16 2'h 2'/e tlj 7 3?{? 1 '{?-U Balt 3.9 3.9 50z40 2.0 50.8 54.0 55.6 14.3 73.0 73.0 38.1 177.8 88.9 12.7 1.8 1.8 21 x}?* 300 1 y2 1% 2% .?'1s 27/B _ 1?/, 6?/? 3 1 '{?-U BoN 3.0 _ 5x75 2.0 38.1 41.3 603 14.3 710 44.5 155.6 762 12.7 1.4 2'hx3'i• 300 9? 1% 2% 3'16 2% 1y, 6?/? 3 1 lh-U Bolt 2.9 _ 65x20 2.0 38_7 41.3 603 743 73.0 44.5 155.6 76.2 12] 1.3 2?hx1* 300 1?{? t% 2% % 2'/8 1% 6?/? 3 ? ?/?-U Bolt 2.9 _ 65x25 2.0 36.1 41.3 572 14.3 73.0 44.5 755.6 762 121 13 2%x1%• 3D0 2 2y? 2?/?s 1l,s 3}¢ 3y, 1% 6% 3% 1 'h-U Bolt 3.4 3.4 65x32 2.0 50.8 54.0 67.9 14.3 79.4 794 44.5 755.6 85.7 12.7 1.5 1.5 2?hxtlh* 300 2 2? 2?/?s `-yi6 3% 3% 1?'i 6y? 3% 1 '{?-U Bolt 3.4 3.4 65x40 2.0 50.6 54. 61.9 143 79.4 79.4 44.5 155.6 85] 12.7 1.5 1.5 3x%* 30D 1?/? 13¢ - 2?i Y16 3 2?h 7 33'i 1 ?{?•U Bolt 2.6 _ 80x15 2.0 38.1 47.3 63.b 143 762 54.0 176 95.3 12.7 1.3 3x:y4* 300 1'h 1% 2'h Y16 3 2% 7 3Y4 1 lh-U Bolt 2.7 _ 80z20 2.0 38.1 47.3 63.5 74,3 762 54.0 777.8 953 72.7 1.3 ? ? % d ( 0 g 1 801! Yz' . 2.3 _ 80x25 200 4 3 0 3 t 3 762 1n.8 53 2 3z1Y. 300 2 2'/s 21Yis 1 ?fi 36 3?ft 2'/e 6% a3'i p %x2% 3.4 3.4 BOx32 2.0 SOB 54A 683 38.1 857 88.9 54.0 174.6 95.3 12.7x69.9 7.5 1.5 3x1lh 300 2 21111 21%6 1'fe 3Ye 3%z Z'e 6'e 3% p lhx23'i . 4.4 4.4 80x40 2 D 50.8 54. 68.3 38.7 85.7 88.9 54.0 174.6 95.3 12.7x69.9 2.0 2.0 3x2 300 2'h 2% 2% 1% 3% 3?{? 2'1 6% 41/q 2 ?/N 4.6 4.6 80x50 2.0 615 667 667 36.1 85] 88.9 54.0 774.6 1D4.6 127z69.9 2.7 2.7 4x1h• 3(q tlk 1Ye 3 T,e 31h 2% 7Y4 335 1 lk-U Bolt 2.9 _ 100x15 2.0 381 41.3 762 14.3 88.9 66.7 196.9 95.3 12.7 4.3 4x%+ 300 1?/? 1% 3 yls 3% 2% 73/4 3yi 1 '/?-ll Bolt 2.8 100x20 2.0 38.1 413 762 14.3 88.9 66.7 196.9 95.3 12.7 1.3 4z1* 300 t?h 14's 2% Y1e 3?fz 2l't ?'i ?'3S I ?-ll Bolt 2.7 - 100x25 2.0 38.1 47.3 73.0 74.3 88.9 66.7 196.9 95.3 12.7 1.3 4z1?/? 300 2 2'/? 3y16 P% 3?? 4 Y6 7',? 3?'q p %x2?/q 4.5 4.2 100z 2.0 50.8 54.0 81.0 47b 98.4 101.6 68.? 1905 95.3 12.749.9 2.0 7.9 4x1lh 300 2 2% 3yl6 P% 3?/? 4 2% 7'h 3i p Yzxi 4.6 4.3 100z40 2.0 503 54D 61.0 47.6 98.4 101.6 66.7 190.5 95.3 127z69.9 2.1 2.0 4x2 300 2' 2% 3% 1% 4 4 2% 7h 4% p - hX2?/i 52 4.6 100x50 2.D 63 667 82.6 47.6 101.6 101.6 66.7 790.5 104.6 12.1z69.9 2.4 2.1 42% 300 23/i 2?/e 3y?s P% 4 4 2`ya 7'h 4% 2 %x2?/4 52 5.0 700x65 2.0 69.8 73.0 77.8 47.6 101.6 101.6 66.7 790.5 771.7 12.7x69.9 2.4 23 03 30D 3+/? 3% 3y? Ilk 4% 4 2? 7y? 5?(4 2 1J?x3l 6.5 5.6 tODx80 2.0 88.9 92.1 82.6 47.6 108.0 101.6 66.7 190.5 733.4 12.7x88.9 3.0 2.5 • I . Clemp-T with gasket Y ?2 1 T i µ, Clamp-T with U-bolt aU *Clamp-T supplietl with "U-bolY" lower hOUSing (includes U-bolt and 2 nut5) B5 shOwn. 24 Additional Clamp-T sizes on next page. ? j. ? C25t Irofl threaded Ctass 125, (St8i1(IHid) pressure ratings, ps1 { saturated steam: 125 ? liquid 8 gas at 150 F: 175 ITT Grinnell standard and extra heavy cast iron Grinnell standard and extra heavy fittings in this threaded fittings are manufactured in accordance section, sizes 1/4- 72 inch, are included inthe"Listof with American National Standards ANSI B16.4 Inspected Fire Protection Equipment and Materials" •;except plugs and bushings, ANSI 816.14). Dimen- issued by the Underwriters' Laboratories, Inc. sions also conform to Federal specifications, WW-P- 501 (except plugs and bushings WW-P-471). . C\ J A ? A: eenter to end o} pipe B: center to face of fitting 45° elbOw: (ig._356 ??. ..; tlanged and threaded fg. 372 & 4 . ?A: center to entl of pipe • B: center to face o} fitting elbows 90° elbow stra;ght: fig. 351 rlght and le/t pitohed: tig. 354@ \-.?.., flanged andthreaded fig. 371+ Ii a g i i_.. - ? weight(appro:)each,lb p 8 ? figa. 351, 353, fig. 351 }fg. 371 size, in. in. in. 61ack galv. black :i ii 13?e .18 .77 .... 25 26 _ . . . %: 'if. I % .ao .at .... '. 13(. .60 .61 . 7 1V2 .92 . .95 .... 11% 1V, 1% 1.d4 - 1.46 .._. 1% 13(, 1's, 1.95 2.00 _... 2 tN, 2'/. 3.73 3.21 .... 2% 1'3(, 213f, 4.94 5.13 1022 3 2Ke 3% 7.21 7.40 , 1325 3% 2%, 3'/,j 9.67 10.70 1822. 4 211f, 313(c 1217 72.87 27.56 5 33(, 4% 21.46 . 22.32 28.13 6 3?/1 5% 31.33 33.33 40.50 8 . 53(e 6x, 64.58 ? 67.14 80.06 Fg. 353 has ribs cast on band which denotes the lett hand thread. I Sizes 4 inch and larger have two bolt holes tapped for stud or tap 6olts. " - OAvailable in sizea ii inch through 2 inch only, tapped to pitch ?/. inch in 1 foot; east wifh._- . .,,. letter "P" on 6ody. ?'- A B size.in. in. i?. blaek % X6 % ,9S 23 % '(d % .37 's '/: 1 S5 ? X. 3/ .e3 ?'l: '/. r/. 1.33 1'/: 1.79 2 7 1 2.89 2% 7Xa 713(, 429 3 1N. • ?. 6.44 31/2 2'/. 8.42 4 73(? 2% 70.64 5 3Y(, 16.96 8 23(. 3.'t, 26.02 8 2'. 4% " 50.17 ?.ach.lb ' , ... flg. 372 galv, blaak . .17 25 .... .38 .... _SB .88 1.38 .... . ' , 1.83 .... ` 2.96 . \\ 4.35 .... - 6.65 .... . 8.77 .... t722 19.88 17.38 .... 26.19 35.31 52.00 64.47 ?. pt.19 f3f _ - _. _ :._____'r,._ ?Jmis?d cast lron fhreaded, (ctass 125) .? -? elbows, cont'd 22',i° elbow Iig.356A ;._ ?q •:?f I _:q I k? g - - I 90° elbow Iedueing: fig, 352 ? n. B: Cer.ter to end ef pipe C. o: canter to }ace ot fitting • Not stocked pi-20 A g weighl (approx) each, Ih. size, in. in, in. 61ack galranized % .52 • .80 . • t% - % 1ti 1.10 • 1 % %' . 1'/. 1.64 • 2 % . 1Tf, 2.50 • 2% % 1% 3.95 • siza, in. Y4 % % 1 YA % t 1Y, % / 1% 1% 1 '/a % t% 1'/a 2 t Y4 : Y2, s z', 1% . ? Y4 1 2% . 3 2 1% 1 ?/. 3% 3 3% . 4 3 2% z 4 5 3 2% 5 B 4 . 3 B B A B in. in. ? Y4 '& 7 % 1x, ly, 1 1% % 13(? Y4 1% 1% 1% 13(, tN. ?'h 1X. 1 "X. i'/. 'Y 1y, 1Y, 23(j 1% 2Y, 1 % 23{, 1 % 23(, 2xs 2.'fi uli Z'X, 2ifs . Z"?, 2Ki 2'/. ?3f6 2'N. 2% 33'i6. 2'3(. 3x, 29r, 3% 3% 3% 29(, 3'/. 23G . 3% 43(, 5% C D in. in. 1Na 1N? 1?? 7J{e t% 1% 1% i?fa 1'7f? P3(? 1'/. ts? 1% 1%a 1 IXi i% 2 2% 1% 21(1 '1% 2 te/. _-., .-. 2 . . t% u. 2w 2)fa ul & m 2'/e 1'7(, 2Xi 2'3(. 3)(4 2SfG 2"Xi 2N, 2'X. 2.*{, 2% 33(, 3% 3% 3% 3'/. . 3% 3YA 3% 3'/. , 3% 4 4% 4 d% 4 4% 4% 5 4J(# 4% 3X• 4'N. 5!(O 1 8% d (appro:) Ib. .34 . .4D .51 .78 67 I 1.21 I 1.02 ' 1.07 7.74 1.44 ? 55 . 1.53 2.59 ? 2.33 208 220 222 4.01 3.68 aat 293 8.44 5.35 5.85 5.98 8.95 11.89 10.83 1127 : .:71.89- .. 16.47 19.00 /9.88 26.66 23.53 19.43 I 51:11 cast iron threaded Class 125, (standard) ? I i i 1 ? ) ''• - . t i A ..: ?? ?_ . , • .i , -..._, pressure ratings, psi 1 satureted steam:. 125 ? liquid 8 gas at 1500 F: 775 w9t (aPProx) A e C D E F mch' lb' - slis,ln. in. in. in. in. in, in. bleek galv. shaighl4ee % % ;i Y. "r(. '3i, 1& .22 .23 I1g.958 % % 'a '/. 1 1 1 .35 .36 . h 134 Ixs iJfe 1% 1% 1% .56 .58 .84 .85 1.25 1.31 lY 7% 1% 1% 1% 13% 7y, 2.03 2.07 tY iN, iX. +X, 1 i3f. 113c. 11%, 2.70 2.72 r o-T c -i 2 1P(. 1X. 17(. 2'/. 2'/, 2% 4.23 4.33 2% ywa 19(6 19(, 2'J(y 213f, 29(, 6.67 6.79 3 23(G 23(i 23(. 3% 3'/. 3% 10.00 10.16 ? 3?/i 2'(6 274t 2?4a 3X6 39. 3(i 7329 13.82 ? 1 < 211(a 2% 2% 3% 3Y, 3% 18.33 16.99 -- 5 33w' 3)(& 3% 4% 4Yi 4% 27.33 27.67 1. B, C: eenter to end of pipe 6 3?/, 3'/. 3'/. 5% 5% 5% 40.85 47.40 7, E, F: eenter to tace ot fitting 8 53(? 53{e 53(a 6?a- 6% 6% 79.00 8125 9 te6 ? 1¢ 359 1/2 'N6 '7f, 7'/. 1'.. 1'/. S7 . . .. % % 13fa ?3(t ? 1% 1% 1% .59 .... . '/ : 'NG 'N, c 'i. 1 % .76 .... ]? . /? ' / -/? 1?1 1 i . 'Y?1. y I? II y I/ li IY . T 5 .... Y ? / /1{ ? 1 1/ '?f 1?/ il{ Iy il! G ? .Vl. . . . . ya ' /. ?1{ % 91f 15if 131, in , .7$ A ? I]?i11 1Yil4 iy t? i>? .64 .... #? _ Y. Y. 1% 1x, .79 .... ? Y. % ' % '7(6 rXi °Xa 1% 1Y, 1N, 1.77 .... Y,. 'X. '7f. % t'/. r/. iX 1.01 . 1.03 ..- ; :. Y. . '7k % iti . a+/. t'/. 1% 1.01 .... . 1 ,x 'K. 'X. r/: i3{, i?/, 1.13 .... i: Y '3?t ZX. 1X6 A. 1.00 .. .. . " . : .. t ...,... ? 'YA 'K{ ' ??? ?? 1)(` 1% .88 .... .? Ivl? ??11 ??? ?? ?? iy, 1.08 .... . . . Y2 YA % Y4 % '3f. t'/a ' t'/. 1'/a i Xe 1x, 1 % .97 .90 . .... - R"?- - % 1 '36 '3(s '3(6 1y P/. 1% 1.08 .... - YA Y4 ? .99 % '/: 1 1 '3(i 1X6 13(6 1% 1.00 .... . 1 '1(, % Y. 72L IXs 1'1(6 1.73 .. .. ?? % '3(i % ?ti 1%, 13fa 1% 1.57 . ..... . . . Yi 'N, 7(6 ?ye i)(I 13(a 7Y, 1.47 .... ?•G: M 1'/a t? t% 1%• ty 1?3k 1Y 1.79 tw to end ot ptpe ? 1 % ')G 1'/. 13k 1J(6 1ix. . 1.53 1.58 .E. i: Yd % 9(i 7ya 1%G 1% t% , 1.38 mtar m tee6 or mmng ? 15.. : 7f. '!f. 7'/. - t i(. t'/. 1 sfi 1.27 t90 . . ? .. 1% 1% 1% 1% 1y, ]YI 1% 1.73 .... . . Y4 7 '3(a 134 1 % 1 Xi 1%, 1 7{i 1.43 . . . . % % 1% 1?4, 1Ki i'/. 127 .... . ? ,y , ; ,r ,i ,i ,ss. ,i ,_ss .... + IN. ,h ru? 1.38 .... P/. t/ . '3G 1'N. i'X. IsG 1.4e .... p1-21 ? _? east tron threaded, (dass.125) ?i ? ? rgt(approa) tees COAt'd B C O E F each, Ih. , size.in. A in. in. in, in. in. in. blaek 9alr. reducing tee t% 1)?, iK, 7Y, 1 536 1 s3(, t? 2.44 .... 1 1 1 ? 213 2.17 fig.359 1'/, / ; /s , /. 1 / i ? i .95 1 . . . . % 9(, 1& 1% 1N, t?a 1I1(, 1.84 7.87 1% 1%, i'/a t3(? P3f? t% i'.?? 2.50 .... 1'/. 1)(I 1% 7% 79(, t'/. 1% 228 . 1% 1 1 %, t% 1% ix, 1'& 7.97 2.05 - % 1/ '3(, i'/. 1?? 1'/. 7.79 .... , .. g? 1'/: % '?? '7f. Pa 1%c 1)i' t'?? 1.67 1.73 ?. 1% 13(a 1% Y}(. 1'3(? 1'3( ? 7'3(, 2.29 ? T/a 1?? 1'/a 7'/a ?'3(? 1?7fi 1% 2.08 ? 1 1 1 I3(' 1%. 1% 1% 19(' 1J2 .... '3(, y'/a 1% t% i% 1.70 ..:. '/: % Y4 i'/a t& 71Nt 1.75. .... - YI - 1% 11(, 1'/a 1 i3(, 2.18 .... t% t& 1 % IN, 11 117(, 1'3(? 2.14 .... 1'/a I3'i, 7% 1'/a 1% 1'(' t% 1.93 .... . 1% 1% 1% 731, 13f, 1% 1'/a 1'3i'' 229 .... /% 1 1% ty 1'/. 13(, ty(, i'N, 2.07 .... 7 1 1'/. 1% 1 P3tia Y% 1.84 .... p--?- [ + }}} 1 Y2 t% tN, tKi 13f, I?'' 1 +/, 1.'(' z 1% z 1'/a 2'/. 2)(a ass 3.36 3.74 .... ??? ...°?e ??. 2 1 1X, 1N, 1 ?. 1 'b PY 2 3.05 3.74 ? ? . % '/s °a Z'i, ix, - iF, 1I3(, 2.88 . - ? W. '?f. 1 %, 1 '/: 1 '/: 1% 2.74 , z Iss. 1 / 1% 2% 2% z; a?o .. . ? 1% 1Y, 13(i . 1% 2 1I3(, 2% 3.26 3.96 1% 11(i 13?, 1.'{, 1% P3(' 2Jfa 2.98 .... ? 1? 1 17{, 1 tKa 1Y4 7% 2 2.68 .... . A. B, C: YA 7/6 Yt ti(a' 1K, 1'/a 7?3?'? 248 .... cen[ertoendofpipe . % ?. ]N. 1% 1'/. 234 2.3B 2 2 1K( 13f, 1X" 2'a 2N? 2'/a 3.71 .. center to Tace of fttin 9 1% 13(a 7% 1% 2 7% 2% 3.73 - ".. . 1% 1% 17(, . 1% 1%, 17% 1y, 21Si 290 .... - 1 13? 7 Yi(c 1? 1% 2 . 273: .... . . - . % 1 7% P& 250 ... . 2 1!(, 1%, 1x, 2% . 2 2% 3.46 .... . 1Y, 7K' 1'/. 1% 2 11K, 2% 2.85 .... ? 1% 73(, i% 1Ya 17% t% 23(, 2-94 .. 1 13(, 17{. 7x, 1% 7?e 2 270 ..__ .. 2 Pn, 1N• 135, 2?/a 11)(• 2% 3.31 .... . Y 1% 1„ 13(, 1% 2 1w, 2% 3.40 .... 2 1'4 1 1N. 2'/< P. 2% 3.30 .... . Y2 i% 13(• 1% 1'/: 2 1'Y, 2% 2.95 . ty, 1% t'/: i% 93G 2'/. 2% 2 323 ... - . Yl ' 1% 1% i& 13(' 2y 2)fi 2. 3.07.. .... 1V, 1 2.. 1y, 1K, . 13(a 2'/. 2 2 297. . 1% 1% 13s 1xa 13(, 2S(,- 27(1 1% 281 ? _:.. . . iy, I tN, t3ra •??, 2w3fa 2 7N 268 .... 2 ? 72(? 13(, 7% .. ?? 'L'fi. 21fi 5.88 6.02 - 1% 1K' 13fi I I3fi 27(6. M 2!6 5.14-? ... ? 1'/a /Ni • 1?? 1'/a 2%i, 27(s . 2'Y 4.83: .. 2Y, 1 ,'/. ,%. 13G 23f. 4.45 e:es : % 7/ +. 1% 1'/a 13/4 2?/s- 4.29 .... % °/a % - 7 % 1'lf, 1'J(. 2)4 4.00 . . 2% 2% 1% 7% 1%a 2% 2% 2% 6.00 .... 2 1X, 17f, 1y, 2 Xi 2'/a Z% 5.17 5.24 1% 1)(4 iN, t'?, 23fi 2 23fi 4.42 .... 2 1% 13(, 73q' 1% 21(. tYS 2% 428 .... . 1 1 tx, t%. 7'3(, _ 1'ij 2){, 9.92 .... . ?/. '/. '/. t'/. 1'/. IN. 2% 3.62 . ... % Y '?f. i3: 1'K. 1 h f3G as7 .... ? pf-22 - •? ? ? cast iron threaded Ctass 125, (standard) CrOSSeS Size, in. A 6 in, straight cross '/. 9;, iiy.360 -• • 2 1.. - ? c ? i ?.._... ' 2% 3 1'9(? 23'ic 4 2'/a A,B,C,D:centertoendo/pipe 5 3% E,F,G,H:centertofaceoffilting 6 3% reCucing cross fig. 361 ,B. C, D: . . _eenler to end o/ pipe , E. F.G, H:: .. eentef to face of fitting Reducing Crosses are read thus: ' p . 3-I-2'h . 1% ``. 3%2%x2x1% ... -. •? ` . size,in. 1 1 % ?/ s ,V, ,y, , , I 1% 1 1 / 1% 1 1 ii ? i t% i% 2 7% 1 1 2 7% 1% 1 % i'/. i 1 1 2 2 I '/: I '/, ' 1h +'/. 2 /, - 1j 1'/. 1 2 z . .. .:,.. fh 1% 2 7% 7r/a 1% 1 1 f 1% 1 ? 1 /a 2% 2% 2 2 2 1% 1% 1% 3 1% 1% 1% 7 3 2% 2 2 2 2 1% ? 2 1% 2/x Y% 1% 7?/a 1% 7 7 1 3 3 2y 2Y, 2 2 2 1% Z 7y 3% 3% = 1% 1% 1% t t 7 A I in. t ? ? T?/a 1% 1Ka T?fa 13fa ? Kl t'/. 14 iy?N. 7 1% 1j 1% t% i 1? 13y If 1Y?? 1% i? 7h Y% 1 N, 1 s/. 1% S% 1Y. presswe ratings, psf I satureted steam: 125, ? liq uid & gas at 150° F: 115 w9t (aPPrcx) . C, 0 E. F G, H each, Ih. '^• i^• i n• black 13u 1.03 7?i 1.59 1 ? 1 i 1 Y 2.42 13(a 113(, P3(' 3.27 1%, 2'a 2% 5.08 7 2'?, 2'e 8.07 23(, 3% . 3% 11.84 2?. 3'3'ia 317(i 19.83 33'ie 4% 4'/t 31.16 . 3/ 5% 5% 47.67 wgi (approz) , B C 0 E, F G, H each, Ib. in, in. in. in. i4 blaek " 1'5'ie W, 13'e 1?6 I Y' 1?e ??{ 1??6 13fd t3?a P3(e i i; i/ i: 1 13sa P 1 74 1'/. 1% 1'3(, 1 Y V V ?? 7I3'11 1% 7?d 2 2 a 44.08 ?? ??(y ??/s 2% 13{y 1?ie 1'je 1% 2 3.22 »;a ?'/: 1 ; T?. z?T, 4.18 1'%?6 7% 1/i' 1% 2% 4.25 1% 7 1'/a 2 3.57 ??16 I ILil, I??11 2X6 2% 6.82 7% 7% 7% 2) (i 2%e _ 5.68 ?V 11KF IIv i l' y 3 , 2 1 2?{ rJ.Jrs ?? I iy/if L II?11 r? ? ? r-rlf 2ya .S.Zs 13(? 1'/. Y%c 'J% 2% 5.39 . . ? 1% 1 % 11Yi, 23fi 5.06 , . 1'/, . . 1% . 1'/.. 2?f? 23f? .? 7.23 2%- 2%, ' .` 6.73 - 1'3(` 2K, 2% 5.68 1?a 1 Wc 1% 21fi 2°/a - 5.66 ' iN. 1% 7'9(6 9'3(i 2K. 5.17 1'(a 1% 1'3fa 73(1 2.'(, 6.55 .. 7k, 7'3(, 7'3(' 2?{, 2% 6.01 17/6 23(" 23'ic Z% 3%, 9.96 - 1 Y. i- ?6 Z?f 2?? 8.8$ . . 1% 23{, 23(e 7% 2'3N' 925. . 7'/. 2'f, 2)(4 2)(1 2% 7.91 1% 23(, 23(a 21(, 2% 7.92 1K, 2Y, . 2% 23f1 2?1, Z21 73(, 2% 2% b",a 2% 725 ' ri 1 y. 2 a 2'/e. 2Xt 2% 6.70 23(. 2N7, 2'3?? 3Y?i 17.22 . . 2% 2'/.. 2% 21%, 9.62 2'/a 2'/a uc 2% . 9.81 2% 23(d 2% 2'3(a 10.03? 23(§ 2Y, 23f. 29(i . 8.37. .. 2% 2'/. 2X, 23% - 7.87 :. . . 2% 23Y, - 736. 2% 8.13 ,.... 21% 2% 2Yi, 2IXa 7.47 . 29, 2S, 33(, 3% 13.64 2%, 23(a 2% 3)(, 12.19 z'/x 2% 23/e 33(, 71.00 2% 2% 2% 3)(, 1-1.19 2'/s 23% 2'/e 33(a 11.59 2%, 29, 2% 3S(, 9.47 2%• 23(i 2Y, 37(. 9.75 2'(t 2'/: 2'/. 31f6 10.00 . 2'/. 2% 2% 3 9.09 ?6 214a 2'/. 3 928 .. pf-27 C85t iron threaded Class 125,(standard)Pressur0 ratings, psi ? saluratedsteam:125 ? liquid 8 gas at 1500 F: 175 ? > l?. . 1 V i .? bUSfilO9S - wNqht aaeh, Ib. welyhl ?a c0, ID. aiza, in. bieck galr. size, in. 6laclt galv. hei 6VShing .021 .022' 3 1 96 98 1 fiy. 383 .038 .039 2',j . 2.58 . 2.61 Oa5 .047 02 2.42 2.48 ? .050 .053 3" Of'i 2.32 2.38 -070 .073 ?71 ,: 2.54 2.64 .060 .062 O1 2.65 275 i j .103 .105 ye .119 .121 3yj 2.50 2.58 / .100 .105 3 3.15 321 - / .090 .093 02;5 329 3.33 Y4 .170 .774 d 02 3.11 3.24 j .215 .220 01 % 3.44 3.50 1 ? ? .182 .789 p7l/ 3.56 3.60 - ? j .786 .192 pt 3.59 3.83 O j .208 .276 ? 'Z98 .385 '302 .393 4 354. 4.10 1% ?? .300 .305 3% 4.00 4.30 ? vs .290 .195 5 03 4.83 4.93 ? % .290 .3D0 02% 4.87 5.06 C12 5.12 5.26 1 % .327 .334 7 .SDO .520 . 1% D 5 524 5.45 O% .42U .6 70 04 6.83 7.77 ?? .470 470 90 ?'/a 7.13 7.40 . . 6 03 7 75 8 06 t%y .657 .680 Op% . 7.72 . 7.78. ' t% .870 .830 pp 8.00 8.32 Ot .730 .780 . . 2 O % 710 J50 ? % .770 :780 B 13.19 73.5 ? Y. .750 JBO pg 73 85 14.0 ? % .750 •BOd 8 04 . 13.93 15.0 2 .920 .950 CJ3'/: 16.60 15.5 0 ? 1290 240 7 1.340 7250 49 75.50 55.8 2% 7 i . 230 07 1.160 1. 8 22.0 22.5 ??/ 1250 1290 06 24.5 25.0 . • ? % t280 .... 10 . 05 - 28.0 26.1 ? 04 27.5 28A ". . . -• - : 2! 1.63:.? 1.68 , , " : . ..... . . . . - , ° ' . . 2 1.90 -. 7.94 .. ' . 137% t79 1.83 . .. 70 325. 33.0- - - 3 Dt% 7.77 1.60 ? 8 -- 37.0 - 37.5 - 01 7.90 1.92 72 ? 6 40.0 40.5 ' - - ?'/• 1.92 . 1.05 ? 5 -- 41.0 . 41.5 0 % 1.93 2.D1 04 43.0 A4-0 faee bushing '/. % .009 ' .010 1V, .345 .350 1 j .540 .549 "a 365 2 ' . .. % j % .020 .020 .5g5 .703 ' 2 .675 .620 Y 3S .030 .030 2% 1% .850 .870 I/ .044 .040 t:i .935 .960 - 2% -970 :988 % .055 .055 3 2 1•330 '1•380 % '? .065 .065 1 t.SW 9.560 l .070 -070 7% 1.540 • - 3 975 1 000 -.085 .090 3% 2Y2 . 1.760 . 2.000 . .120 .125 2 2.100 2.100 _ ? . ° .125 .130 3% 1.140 1.175 '/. .735 .140 3 1.920 1:960 - - - 4 2%: 2 550 2.650 . . .r . , . . ?.: _, 180 .. 165 ...: : . .: .. .2 - . 2.700 2.820 - 1 % . . . ,268 . - 273 ? . 4 2787 2.789 .. Y 215 - 250 9 4.130 4.500 5 3730 3 780 IY 145 150 . 8 4, 5.820 . 6.050 1% ?% .339 391 .346 . 98 3 2!i 6.900 7210 • 7.5D0 . %t . .320 .330 8- ? 8 4.583 8.660 • Not stocked 0 InsiCe hex Hefagon head or octagon heatl bushings, size 29, in. end smaller reducing one size may be mede eiMer of mallea6le iron or steel. Otner sires may be made eitner oi cast iron or malieable imn or s[eeL Face bushings. sizes 27p in. antl smaller may be matle eitner of mnlleable iron or stECl. Face bushings. 3 in. antl latge< <etlucing one size may be matle eitner of malleable imn or steeL Pace bushmgs. 3 in. end lerger /CCuting Iwo sizes Or morB, mey be made eilhar ol cest or malleable iron or stael. ;pt-3] $ plu9s weight (approx) each. Ib. ? size, in. black "• square head plugs ' ""' • cored: fig.387 yo • .. . % ..... Y4 .132 ? 1' .250 ?% .397 - solid: tig. 388 ti% .600 2 .815 ' - 2% 1.320 3 7.870 3+s 2.500 4 4.000 cored: fig:369 s bar p1ugS cored: fig. 389 (approx) w wgt ( i , t6. e each solid: lig. 380 . . ze, s in. EIacK galv. bl .135 .261 .407 .515 .833 1.340 1.910 2.600• 4.000 olid: tig. 380 9i (approx) ach, Ib. , 4 . 3.82 • 3.97 & 68 5 6.50 6.63 9.60 countersunk: tig. 3966 6 9.94 10.34 14.78 $i 8 2026 21.D0 ° . ;? .. = cap. . fig. 361 _ -. , .; . .. r'. . : . size. in - ? i..?'+ :. ? 2: 3 -. . . . 4 5 - 8 a 8 ? r . ? IOCk(lUt fig. 370 ;:0. .. s?..... n?....e size, ia 2%' 3 . 4 cast iron fhreaded, (dass 725) ?ight IaPPro:1 each, 16. (solid) tig. 3B'b ? 175 ? 548 . A np l 50 oso 310 ° fi¢ 390 390 k: wgt(approz) each, 10. Iv. size, in. black 9eir. / .050 -053 e % .090 .t00 ? .195 .200: : 1% .320 •340 : ? i/ .470 .480 p .BaO 7.3 ? O 1.400 20 3 2250 9.0 ' . • 3/ 3020 3.5 q 3.760 3.9 weigM (approx) eath, Ib. . . black gslr. ?k 2.55 . .. . ... . ' 4.10 . . . ..... . ;? : 6.40 10.70 ••••• 14.20 14.60 . 27.23 28.35 weight (approx) eich, Ib. black gelv. 1.13 . 1.16.- ,.60 .. . . . 1.70 3.50 3.55 I ` i.. ..?-• •._..?_ - weight (apptox) 1006' f9 diam. of diam. weighl (approx) Ib each diem. ot na of diam. ot each. 16 , €' . bolt holes eored size, tlange, no. ot ol h l . black . galv, size, in. flange, in. . holes holes black galr . - in, in, holes o es ?. ?4 29ie 4 % .39 .40 45 1 1'/ 4 4 4. 4 % '/. 1.13 1.14 1.74 1.15 . c 3 3i 4 4 % '/ .43 73 . .74 . 1%t 4'/: < 3(i 1.5? 7.56 Y ?4 i g/ q a Y .80 .81 2 5'/x 4 3(? 2.40 2.43 - • Notstocked . - •.!?,'?? and'e-inch plug5 furnished in steel. N '.j and 'i-inch co uMersunk plugs fumished in malle able iron. .- Pf-32 - .; '. '0' ' r KENNEDY ,UL LISTED BUTTERFLY VALVES • - CONFORMSTO UNDERWRITERS LABORATORIES, INC. STANDARD 1091 MAXIMUM WORKING PRESSURE: 175 PSI Fig. 971 UL WE - Wafer Body Fig. 971 UL LE - Lug Body 0 4 SIZE -4„ 5„ s„ 81. 101, 72,-. DIM [125.w] [750,,.,] (200...] (250Mw] [300.?] ^ i 11]5 12.15 12.80 1420 14]5 17.25 [_?eJ ? [=] f?s] [wal [a7a1 (uae) B : zs ? 5.12 6.00 zss 9.00 id:57 :0)) ... I1?l [152] I1927 [2281 ?261] ? ?.00 5.W 6.00 8.00 10.00 t2.00 tIooJ [+u) 11501 [200] 12so1 I [aool p 4 10 sea [Io+) (2ae) E 3.50 5.00 . 9.W 12.00 I8911 (127] . ?222? 12001 F 2.00 9.00 [50.81 [7g1 G 9.53 fso] 418 [logI 7A2 [17e1 8.52 [2161 LL 2.00 3.12 2.12 0.98 2]5 9.12 150.8? (598? [59.81 160.41 (69.91 17921 H LW 8.50 9.`A 11]5 ta25 V.CO 0 y [t901 (216f ?2<t? [?98? [3fi21 La]2? q O ? ? 5.841 3/a-10 IR-9 K g 12 ACTLIATOR LR-5 LR-8 iUFNS TO OPEN 9.50 EIGHT Waler 221b. 321p. 361b. I1OKg.] ?ta.SKgJ [ 16.5 Kg.J 6E 1?. -? 9016. i161b. ?29Kg.jI ?<tNg.) 152]Ng.? Lug 271b_ 401C. ¢< IE. (12.3K9.1? ?18Kg.1 I20 K9.1 191C. 1151b. t6J ib. IM Kg.ll f52Kg.) 1 [;aHg.] Valump pf t i5 cu. in, 149 cu. in. 143 cu. i. 2ap cu. in. C90 cv. in S:lJ co in ? hippingCano I I88<ccf [2343cc1 [23a3cc, . . . [3933cc) ?8090cc? ?B695cc?? NOTE$ [ I Mehic MeaSUremenls weigpts: ApOronimate i, KE7VNEDY VALVE OiOision ot ITT Grinnell Vawe Cn inc r KENNEDY UL LISTED BUTTERFLY VALVES (7;: ? CONFORMS TO UNDERWRITERS LABORATORIES, ItdC. STANDARD 1091 MAXIMUM WORKING PRESSURE: 175 PSI Fig. 911UL WE- Wafer Body Fig. 911 UL LE - Lug Body . Actuator I ; Item Description Material- 1 Shear Pin - Handwheel Steel 2 Shear Pin - Worm Gear Steel 3 Housing C.I. ASTM At26 Cl-B 4 Gover C.L ASTM A126 Cl•B 5 Worm Shaft Steel - Stress Proof 6 Worm Steel - Siress Proof 7 Segment Gear D.I. ASTM A536 65•45-12 8 washer Commercial Brass 9 "O" Ring Buna "N" 10 Expansion Plug Steel 71 Cover Gasket Fibre 12 "O" Rings Buna"N" 13 Indicator Malleable Ircn 14 Mounting Screws Steel 15 Adjusting Screws Steel 16 Lock Nuts Steel 17 Cover Screws Steel Valve Item Description Material 1 Upper Shatt 475 S.S. 2 "O" Ring Buna-N 3 Body C.I. ASTM A126 CL-B D.I. ASTM A536 65-45-12 (1) a Lock Pin Steel C1010 5 Seat EPDM (2) 6 Disc D.I. A536, Nickel Crome Piated (2) 7 Reinforcing Ring Steel H.R. 8 Lower Sha(t 416 S.S. (2) 9 Lock Pin Steel C1010 (1) 12" size only (2) Other materials available on application ____JEDY VALVE Division of ITT Grinnell Valve Co., InC. i 11 . PO@R9defY-At?tua'??d r-aS?eners ?--f- ? GaL Shark Na. Dia. .' • . -3331X a/s" Head Diame8er Drive Pin W14h Qf15$IC FEt94B This smooth shank fastener 3335x 1 y6 ," provides excellent holding power for permanent installafion of wood and light metal to concrete 3329x ar steel. ? For use in Ramset Toal Models 3337x Tt00 and 122MD with 31a" barrel. "LC.B.O. listed for sill plate application. 3330X" 1?%e<" RepoR Number 1747. O[her fasten2rs list=d - under Report 1639. , ' 3340X "(64" ; ' . k.3$Q8x*`1/32? 3ie t i • i 3/e" x 16 Threarled Stud . 9isa '/3z" Thisihreaded, stud is designed ; ?. f t.h'- VVt1414?V JYYYL1114J useci Whenever the option o permariAnt or removabie fast ? is desired. ? i For use ir. Ramset Toai Mo TiQO and 122MD with A/e" b Knurled ShanF for usa m.tructural st i,•_ t ? Eye Pin ? V This smooth shank dnve pi,t 4 ? , 3/1S7 8)J2 tS U$BC? f0( h?J1f ?ifi( y a . , ' acousticaf ceilings frpn co r s y ' or stesl For use in Ramset Tool Mo 122NlD with 3/e" barrel. ?ning -istaaK ,?, ? +r ? v ,a x,= iees s,gu ? . ?. ei , a 1 3go1 . 5 ? _ . ?.. : • _ ? __ i. 1 15 2 1'/a 1112 1ir 13ie ?h Ya 01/4 'fz 3V4 1 11/1 1112 13ia ?