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HomeMy WebLinkAboutGAS PIPING PAPERWORKBOARD OF COUNTY COMMISSIONERS TANK SIZE [Al] GAS PIPING SCHEMATIC TANKSIZE: Soo GALS. APPLICANCE — TYPE/SIZE Al GeAy for Sa.+6 A2 Ta►e Tess w",r lkoJ..r A3 9we; A4 g 08 S+�j 6 A5 A6 [A4l PLANNING & DEVELOPMENT SERVICES DEPARTMENT Building and Code Regulation _ _Division SCANNED BY St. Lucie County [A5] ST. LUCIE COUNTY BUILDING DIVISION REVIEWED FOR C MP IANCE REVIEWED BY DATE - 21 PLANS AND PERMIT MUST BE KEPT ON JOB OR NO INSPECTION WILL BE MADE. Zoo 006 BTU )So 000 BTU GS , 000 BTU (.0 00o BTU BTU PIPING LENGTH &SIZE (PIPE SIZE WAS TAKEN FROM L1 7 O FT. 3) LF INCH DIA. THE 2014 FBCFUEL GAS CODE — L2 3 FT. 3/4 INCH DIA. TABLE 402 L--J) L3 la FT. 3/4 INCH DIA. L4 1-F FT. - 3/N INCH DIA. L5 Zo FT. _3 INCH DIA. L6 10 FT. S/�_INCH DIA. L7 3S FT. 3/4 INCH DIA. L8 10 FT. 314 INCH DIA. L9 FT. 1-10 FT. L11 FT. INCH DIA._ INCH DIA. INCH DIA. i COPY —-------L12 --FT. -------INCH-DIA. --------------------------- Website: wvv v.stlucieco.aov 2300 Virginia Avenue - Fort Pierce, FL 34982-5652 Phone (772) 462-1553 FAX (772) 462-1578 Revised 7/22114 0.. ■ Corrugated stainless steel tubing (CSST) gas piping systems will be bonded in accordance with Section G2411.1 (310) of the Florida Building Code and NFPA 54. ■ Underground gas piping will be installed at a minimum depth of 12 inches below grade in accordance with Section G2415.12 (404.12) of the Florida Building Code and NFPA 58. ■ Polyethylene pipe will be installed in accordance with 6.11.4 of NFPA 58 and the Florida Building Code. ■ Carbon monoxide monitors will be installed prior to inspection and will meet all code and safety requirements of NFPA 54 and the Florida Building Code. } (.502 00 gTa, S Qwjiar pok less -49 �90 w�-w pu,Kr 7r� I so, 000pf Roi Pv ml S., Ci, a C°mty: FFloor Plan r �'..a I 1 1 i Comer doming Detail i SALdTaWeNot. tv-11, rJ rI +mm.w Lintel Type Designation w.mTm'�SS.e>o mmrw Celt Clete Linml Schedde Mllamxn�m. 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Xsw P..IN —a INN ..I. awK w R.P, p IwwXX4 1. s NRNAImT ... u RXwLzaw Ann A. an R NAP. xwanwmYlMm -- ®n VW@ E A AN i% uvul PNE 20]' — —GL BRffTAff#*MUE e \pf.y �Yz1a`ytPANARN EN Ir 2 -SE ' N iFM 6L 99 r I i I RNS Ipff .A nn YRM1 1 SNI 6O]IA 241) e , le mll 2108 x 241] I i /i id iZ = m„ m9IXA _ wn qn[ 2098I �1 e6)3N MfEI A Ietl ' ura iiOLRA 2085 W W — r —.SIRS xm90 KQTNPlAR0WATERWfMO 0EM 2293 BfR XCEEIR UUA.M. BRRMN AW. 1.19ERIN.1 3.9m f.E Df9CWf Owlµ SUBOI WM M (µA DAN SUBWN9W) 3LOCN A. LOR 1. 2 AIS, 11 µO 13 ("a. NECwD 1121 RACE IIAN ..a. NEC.o WSS PACE 5951, AS IWOONS D IN RIAT DOw D. RM£ 22 M PANIC RE. M ST. WL1E E.Nr .. 5tppoll i 3. SLOw NM 3Y CNARRC RALNIC MLY, n93 %iwERW p IS IN EME'C. ACCCRM0 10 mE MORE INWRµCE RAZE YIP. � 'n]{ CWYuxm 9Axa 40. 121IIC Ilea e. EWECSW wi SFPROARY I6. 2012. SHE EAAGI IErCNARM CAN MY BE w1ERYINEO By AN ELEVAnw MNRmtAm + N. ALL µPE 4AWN0. RA .E.RL PµY. NAK GLEN IMAM µ0 ENE. XEPERI mE ..W. MAS NI NxIIME04E S wmRpAMD IN _ fA1HDATE014 WWI YAY ICN9Y LANDS w OMGS 0. UNwAwQMO UIUIRAN S D 0111Y SERNCE5 RAW NOT BEEN LOMRD ON RAN WRKY. ERRRr AS NW. Y. 1 Sllorm NEREw Nor .asm.clm eIXIs swrlos wEAE v AN I' c rw Wars-w-.AY, EAaNwrs OF R .. MANNN1S,, A9µ...r4 Dwd RE4INCT WS w Yu., Ac, R/ pins. 1 I "Mucnws Q IMS NAP ARE NIT YAY. MmWr PREN VMA— µD SPIN.-SUL w'A R .A YCWSEO S' MKKfl G YA9 E9ER. I a ALOR. w DRIERS".ro SAiKY..N w..W BY 0mw MAN mE a.l. RMry W RARREE Is 9RwIBNEn J .R..T M lWNl CON91 w RE SOM. Rµ, M PARRS. ARM.K. sn. XwEM I5. w .¢a AND nm — YEANRED DATA, ALL MEASLOWNEN15 ME IN ACCORDANCE WIN UNI NE STATEC STM9A10. W 1£EII µD p4MAL51XEREp'. Z wµ w u 10. RE 44i .AR 6 WWII WA5 IXIOOFA 19. 3018. �Ai[i EIEMnws SMOWI XplEw ME & FINE µ0 BA.. uPSN NORM µWCµ KRntAL DANY w R "S BASE &HwYAIM D WipO 2I ST. LANELWNTY W A' Mm µ E..ED w ASr6. IwOpWTY SC4 BII ] 12 ME EIP .. m w ME RAY µ0 YA, IS I•�A ii PESMENn.4. 03 0 II I P t� �E I AIV. nC (RMI YEMDJ NAS U1b1IID Y4na A M 1. , RE mEawr mr NYVp wlyu 3Y51EY. Ser 1 I`P. AW ROw1G ¢SMIWIIXAN9RIPARNEN p HARLES ARN( YwRRARA WRRINNDIrs .wo wlmaIwlllEWMrDA x ws suRKr vusuMRR.Xrs rM6 wo.LssD ,No AuSarto I9XD wasw a3RKr 2Im �� UA R THE MCUMI Y 1w MS SWKY FALSE04 IW,A4 6TIA¢5 _ _ .,. PAR IN. AW .NW woE RRn 3 N 8I Copynght 2017 National Fire Proted'ron Association (NFPA®). Licensed, by agn for hunWdual use and dovmload en MlQW W AmenGas for desig y "er ashen Pear. No other reproduction or transmission in any form pemtiasd without wnaet, ,nsion of NFPA®. For inquiries or to report unauthorized use, contact lic', ahfpa.drg. Chapter 16 • Pipe and Tubing Sizing Tables TABLE 16.1(n) Gas: Undiluted Propane Inlet Pressure: 10.0 psig Pressure Drop: 1.0 psig Specific Gravity: 1.52 Plastic Pipe 112 in. t1 i ; I in. 1114 in. 1112 in. 2 in. Length SDR 9.33 SDR II SDR 11 SDR 11 SDR 11 SDR 11 ' (ft.) (0.660) (0.860) (1.007) (1.328) (1.554) (1.943) 3,ilYTDEUSE_Sizui�BlW2eiTirstSfa Presstireegy(atbr'#i4t(,SFgorttTStage'(Law>'�¢ssdi¢){eguryry�� r 2140 2390 - 7740 13420 20300 36400 1840 ,:50 6630 11480 17300 31200 50 1630 5870 10180 15400 27600 60 1470 2950 5320 9220 13900 25000 70 1360 2710 4900 8480 12800 23000 80 1260 2530 4560 7890 11900 21400 90 1180 2370 4270 7400 11200 20100 100 1120 2240( 4040 6990 10600 19000 125 990 990 3580 6200 9360 16800 150 897 897 3240 5620 8480 15200 175 826 826 2980 5170 7800 14000 _ 200 778 778 2780 4810 7260 13000 225 721 721 2600 4510 6810 12200 250 681 681 2460 4260 6430 11600 275 646 646 2340 4050 6110 11000 300 617 617 2230 3860 5830 10470 350 567 567 2050 3550 5360 9640 400 528 528 1910 3300 4990 8970 450 495 495 992 3100 4680 8410 500 468 468 937 2930 4420 7950 600 424 424 849 2650 4010 7200 700 390 390 781 2440 3690 6620 800 363 363 726 2270 3430 6160 900 340 340 682 2130 3220 5780 1000 322 322 644 2010 3040 5460 1500 258 258 517 933 1616 4390 2000 221 221 443 498 1383 3750 IPS: Iron Pipe Size. SDR: Standard Dimension Ratio Notes: (1) Capacities are in 1000 Btulhr. (2) Dimensions in parentheses are inside diameter. 2017 LP -Gas Code Handbook Table P-1 B Propane Maximum Capacity ofTraclope CSST in Thousands of BTU per Hour Propane Gas i a `e�x raG �i 1t9 �q �, D t (Based on a 152 Specific Gravity / 2520 BTU per cubic foot Gas) Tubing Length (feet) 1 I Size r 5 10 15 20 25 30 40 50 60 70 11 30 go 100 a 200 250 300 400 500 600 700 800 900 1000 1100 1200 1300 140Q 1500 15 190 138 14 100 89 82 65 59 55 54 52 49 46 41 38 33 30 27 24 22 19 17 17 16 16 14 14113 13 13 [3/8" �71 i) G!I I`F °Y Rdl M^P` fl'= 2..18 9 iC9�, ' « 3h e� 9 t t m'wm "#,=4, ll .?! 4 :.. ' ; 0 '90�.!48`' 7$4}t�t,s e+ :;zP7-.}sc, ` Ink ,/ «$ j .. :,. ..:a ... ,�: 3 ....i s }S .' ....".�-.=...4 s• w.�..- ,d< .., - r g.,a um>uu. xduwa3 :rwaxz *u .. ,.:..u'1 74" 25 1069 763 625 545 488 446 388 348 318 294 285 277 261 249 222 204 177 158 146 127 112 103 95 90 94- 81 76 73 71 68 66 C" 'Yia''f"y`^'°°"'� ^'f�L4S C R nM'( SflP �4'� a`^ P' SsrnM+"� =S� 3is T,8 1�¢ttffo-o- ''d73i' 93,3 ,I _y5 y8 .w:. €S9✓' f''Sd3 .� 3 'tom..ds.'Gw »...,.y. ` ` iubi. P = 3i.,....dL ey�9�4'" mm"'mf T .. 4 -�' S .l -08 A�' Ir ' .. $d,. q' 47, 'T.:::. 1_' "1 2 �I'Z�' l63 s e....u�' " . wts ,.'w.w.s ,�..v > .0 .,Mw: a..�x d "f { kT62 T 4 i35. f1,3 'f «t2s"/ 1 j 16, .�."1+ ..., 1 ;,`.,. t , � ' IRE I'll 39 3469 2467 2022 1756 1574 1438 1249 1119 1023 948 917 888 838 796 712 652 567 507 464 402361 329 306 287 271 256 245 234, 225 217 211 4 - "t"�*.� s• re'v^y�'rna ni ",�+"tt^'" �°' 47'i3 8 . .),�o''j?ly;°•,�ii, .�'n"pm�^-t ` ''k^n`'. �, m8.'^'.+a' „grI [Y"i�i, '. J{`�45.ai: i; �. `2d 2%'6i469 &H^r^TM=rrc' 39w...y73 91i +BY4 62 13073 9259 7568 6558 5869 5361 4645 41583797 3516 3398 3290 31032945 2635 2407 2085 1867 1704 1477 1322 1118 1047 986 936 893 855 822 792 763 Notes: END (Equivalent Hydraulic D16meterf Atheoreti al sleewhich reflemthe hydraulic performance of me tubing. It is note true physical measure. This number isused to mmparelndividual sizes betweendi6erentrim ufacturea The h ig her the EH D number the greater the flow capacity of Me ping g. - (� I Table P-2 Propane Medium Pressure Maximum Capacity ofTracPipe CSS7ln Thousands of BTU per Hour Propane Gas I I lFiri.GSFyeS��(E ��1�,1 Ii`n w" c! }aa"� �u .�..s�Ff3iav�wuh (Based on a 1.52 Specific Gravity / 2520 BTU per cubic foot Gas) Tubing Length (feet) r 15 a 25 A 40 50 60 70 75 so 90 100 125 150 260 250 300 400 500 .ae 700 800 900 1000 1100 1200 1300 WOO 1,500 3/8" 15 222 159 131 114 102 93 81 73 67 62 60 58 55 52 46 43 36 33 30 27 24 22 21 19 17 17 16 16[252 14 14 .� 3/4 25 1192 850 698 606 545 497 432 388 355 329 318 309 291 277 249 226 198 177 161 141 127 116 106 100 95 90 85 82 76 73 3.rw Y'9;u!,ad r?« 57..., 6%2 ,7 Gfils v� 3A3,,,.yry t1 0 S.A � 8, 825 `'§11 .. r_5,96,; i 4 f!9t,33.'ri, `47 4 .9$ , C.f%.,3.i.. � i:u-.a._ :35 § tiXd 34v-, 4 l b: 2 h0 f52''I+{i+�b'� 9- ,;�7,� w4.:� .iu.wTi s�....,. s...,a,.."s».,,,. s�: 1 '/0' 39 3870 2753 2256 1959 1756 1605 1393 1249 1142 1058 1023 991 936 888 796 728 632 567 518 450 402 367 340 320 301 287 272 261 242 234 ,1, msr :tt r r vm nm ¢ srcvre y"� ma,.+?"v,!"". ,,.zS03- 'Sb68 `w., 34: ;)':... .,,_, 1b" .T,$Sa; J . axe. ;: S u1?7tq s _ R ir6=' a 1,�€ v918 2" 62 14609 10347 8456 7329 6558 5990 5192 4645 4243 3930 3797 3676 3467 3290 2945 2688 2331 2085 1905 '1650 1477 1349 1249 1168 1102 1047 997 955 885 855 'Notes:Teblesabave Include losses lorfaurliodegree bends and two end finings. Tubing runs with larger numbersofbends and/orfittagsshali be Increased bytheequivalentlength oftubing lathe following equation: L-Ua where Lis deaddidonal long in of tubing and n 15 the number of additional things and/or bends. Application Materials ................................. Zinc - regulator Ideal for use as a first stage on any domestic s¢eASME or Body ,..,,;,,,,-.•••.,,•,,,,,_.•-...... ••••••• Zinc requiring Bonnet...................................................................................... DOT container in propane gas installations airing up to t,500,800 .Steel ....0.—............................................esifl..nt RubberBTU's per hour. The regulator is factory set to reduce container Spring .-,•-•,-,.,,,.. .,Resilient R pressure to an intermediate pressure of approximately 10 PSIG. Seat Disc ... .........-..••-•••-•Int ....................... Diaphragm ........... .....--••-••- Integrated Fabric and Synthetic Rubber Features • Compact design can be connected to a service valve using either a POL adapter or a RegO product pigtail. • Large threaded%" RNPT bonnet vent can easily be piped -away, underground installations without the need of glue kits or extra adapters. • Non Adjustable - • Large flow orifice resists freeze ups due to water concentration in LPG vapor. • Design provides for good Flow regulation at both high and low container pressures. • Built in relief valve and travel stop comply with NFPA 58 over pressure requirements. • Incorporates W F.NPT downstream pressure tap for an easy inline check of the regulator's delivery pressure. • Molded diaphragm provides an o-ring type seal between the body and bonnet • Body and bonnet are assembled in the USA using the unique, natented ReeUIok seal system. Medmum Mw based an 1nktpressure 20 PSIG Mgn-11n -- — - A14 O• 100 Rego Or. P.O. eaa 24r asn. NG 21241 USA wx�a•.a9ePmduc6.mm PnYy (33fi) M9-r70T FaR (335) M9L596 Designed to reduce first stage pressure of 5 to 20 PSIG down to burner pressure, normally 11' w.c. Ideal for medium commercial installations, multiple cylinder installations and normal domestic loads. �$OTdEIa • Large vent helps prevent blockage and has >.° F.NPT for vent piping • With 15 PSIG inlet pressure, regulator Is designed to not pass more than 2 PSIG with the seat disc removed. • Incorporates integral relief valves. • Replaceable valve orifice and valve seat disc. • Straight line valve closure reduces wear on seat disc. • Unique bonnet vent profile minimizes vent freeze over when properly installed. • Large molded diaphragm is extra sensitive to pressure changes. • Built in pressure tap has plugged 1/6" F.NPT outlet. Plug can be removed with a 3/16' hex alien wrench. • Select brown finish. s4:.mt&-Imit 'sWm- Mounts directly to house Me piping. Eliminates need for union joints, elbows, and mounting brackets. Quick and easy to Insist. �aterL7ts -- Body ... __- ........ Is astZinc --- — ..........................................^................... Die Cast Zinc Nozzle Orifice .... :.....-............. ............................................ Brass Spring......... .........................................._............................. Steel Valve Seat Disc ...... .-•'-•-•---..... ^......•••... Resilient Rubber Diaphragm ................. ...... integrated Fabric and Synthetic Rubber LISTED W4403131i LN U 25RODO 5W.W0 75DM 1,000000 1,Z3)XD �a3646 %a' F. NPTLV4403946R' 926 Ddll 11° w.c. at 10 PSIG 9° to 13"w.c. F. NPT Inlet MOMS LV4443966R' F. NPT basedon 10 P610 Wetand 9'w.c. tleGveryP—um. Over Inlet 1 935.000 M6 IGO Rego er. P.O. aox2470on, NO 27244 USA w .-WP-duc .mm Phmiepgl4 94707 Fas(336)44M594 R&E— . quurralrsa Quality Steel Corporation AG/UG Propane Tanks —{LEG 'AinTH 14=0 're:_3. AND LIB APPROXIMATE ABOVEGROUND/UNDEGROUND (AG/UG) VESSEL D161ENSIONS AND SPECIFICATIONS WATER CAPACITY DIAMETER (OD) HEAD TYPE OVERALL LENGTH OVERALL HEIGHT LEG* WIDTH LEG** SPAUNG WEIGHT (lbs.) **QUANTITY FULLLCIAh PERSTACK * 120 wg. 24 Ellip, 5 8 3 ] 11/2 2'-101/2" or 3.11' 260 108196 161 12 *250 wg. 30" Hemi. 7'-10" 3'-8" 1'-5" 4'-11" 480 54 9 *320 wg. 30" Hemi. 9'-7" 3'-8" 1'-5" 5 620 45 9 500 wg. 371/2" I Hemi. 1U' 4'-2" 1'-8" 5 950 37 1 30' 8 1 6 1000 wg. 41" Hemi. 16' 4'-5" V-8" 101" 1,800 17115 61 5 1450wg. 461/2" Ellip. 17'4" 4'-11" 1'-9" 111' 2,650 12 4 1990wg. 461/2" Ellip. 23'-11" 4'-11" 1'-9", 16' 3,520 8 4 Dimensions and specifications shown are approximate. Individual vessels may vary. *Leg spacing+/-2". Leg widths and spacing may vary based on mfg. location. Check with your salespason for details. 120,250,320 wg. standard tanks -no holes in legs (one center hole an request(. 500 and 1000 wg. standard tanks - 2 holes 16-on ceder. 145o wg. and up as shown above. - --Full load and stack quantities vary by shipping location. Check with your salesperson for details. General Specifications - Conforms to the latest edition of ASME Rules for Construction of Pressure Vessels, Section Vlll, Division 1. Complies with NFPA 58. - Rated at 250 psig from -20° F to 125" F. All vessels registered with National Board. Two service options available: Option 1: Ready -to -bury underground option, coated with either powder coated phenolic epoxy finish. or liquid applied epoxy primer coat followed by urethane top coat, supplied with composite AG/UG dome. - - -- ---Option -2: Aboveground option, coated with eitherpowdercoated TGIC polyester finish or liquid applied epoxy primer coat followed by urethane topcoat, supplied with steel AG/UG dome. All vessels are shipped vacuum pre -purged to enable simplified first fill of the vessel. Updated June 30, 2015 V. CABLE All CLAMPS TO (PULLED ANCHOR STRAP »'I (2)HDG CLAMPS TO ANCHOR (PULLED - TIGHT) i UNDERGROUND .TANK HOLD DOWN DETAIL GENERAL NOTES: 1. HELICAL ANCHORS SHALL HAVE AN ALLOWABLE PULL—OUT CAPACITY AS SHOWN BELOW. ANCHORS SHALL BE INSTALLED PER ANCHOR..ld ACTURER .TO ACHIEVE STATED LOAD CAPACITY. CAPACITY VARIES WITH SOIL TYPE VERIFY ANCHOR CAPACITY WITH SOILa7��Ps-.fbJ.CC�€iNTEREO: 504C¢AL,'iANK 1350# _ 250 TiA`TgNK'''.65T3._ .`.�CHECK 'FOR'UkRGROUND`.[MURIES PRIOR TO ANCHOR INSTALLATION 2�STRUCTURES AND FEATURES ARE DEPENDENT UPON LOCAL CODES AND IS THE LOCATION 0� TANK RELATIVE=,TO ADJACENT P.ONSIBILTN OF OTHERS. _4 ? THE STANK .AS SHOWN HAS, BEEN DESIGNED TO PREVENT FLOTATION, COLLAPSE, OR LATERAL MOVEMEM DURING THE BASE :f.LODo.,eieNr' ® COPYRIGHT 2016 — FARLEY ENGINEERING. LLC PA DAT AMERIGAS Consulting Engineer #40111 — CA28108 ____ .. L. c..... 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