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COMPLIANCE INFO_1985-1995
Environmental Health - Public
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2300 - Underground Storage Tank Program
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PR0231125
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COMPLIANCE INFO_1985-1995
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Last modified
3/22/2024 2:40:09 PM
Creation date
6/23/2020 6:43:09 PM
Metadata
Fields
Template:
EHD - Public
ProgramCode
2300 - Underground Storage Tank Program
File Section
COMPLIANCE INFO
FileName_PostFix
1985-1995
RECORD_ID
PR0231125
PE
2361
FACILITY_ID
FA0003730
FACILITY_NAME
TIWANA GAS & FOOD
STREET_NUMBER
1210
Direction
E
STREET_NAME
HAMMER
STREET_TYPE
LN
City
STOCKTON
Zip
95210
APN
09403012
CURRENT_STATUS
01
SITE_LOCATION
1210 E HAMMER LN
P_LOCATION
01
P_DISTRICT
002
QC Status
Approved
Scanner
SJGOV\rtan
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\MIGRATIONS\UST\UST_2361_PR0231125_1210 E HAMMER_1985-1995.tif
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EHD - Public
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14 f3 16�A ea ys 1 Z/®� HA/�IME/P �y .57- _K7 -0,0,.C,4 I?- <br />W .1 <br />Zu......1 e..adi.._ Own" or Debtor Address N0. and 30401111 <br />city $LSU O.Is of Teel <br />1S. TANK TO TEST ff 15aa.. BRIEF DIAGRAM OF TA <br />NKFIEL <br />D <br />67G A 7-7—AGHGL <br />7' 91,46 AA <br />p)lLJ1 1-W40�4/ <br />1 <br />Brand And ora" " <br />17. FILL -UP FOR TEST <br />Stitt widof 801109" <br />befote FIu-up <br />to x' <br />Dal1ate Tank Diameter <br />16. CAPACITY <br />Nominal Capschy /O,e 400 <br />Gallons <br />By most Accurate /O 3 O <br />capacity chart svahebls <br />„ . 00 long <br />18. SPECIAL CONDITIONS AND PROCEDURES TO TEST THIS TANK ffWaterfnlank ELMdts)being tooled wllhLVLLT <br />See manual sections spphcsbts. Check below and record procadurt in log 124 LJ Hlgh water table M tank excavation <br />List mx.knum moveable teen pressure for $1110112. 19. TANK MEASUREMENTS FOR <br />Far. pound rule does not spmY to doublewaned tanks. TSTT ASSEMBLY <br />ComPlelt section below: bottom at link to grade' ............................ ) 3 3 In. <br />Add 2M tori xw, <br />probe easy ........................... 30 <br />1 H lout pound rule required? Yes lel��77tt NO ❑ Total tubing to assemble — approximate ............. 163 in. <br />2 HNght to 12' mark from bottom of tank <br />3, Pressure el bottom 01 IMk <br />A. Pressure at lop of lank <br />of butlat 37, <br />Its. 9 <br />table /� M• <br />NOTES: <br />The above calculations ere to be used for dry soft conditions to <br />establish a positive pressure advantage. or when using the lout pound <br />rule to compensate for the presence of subsurface water In IM lank <br />area. <br />1 <br />Ffeler to N.F.P.Ai. 30, Stollens 2.5.2.9 and 2.2.2 and the lank <br />manufacturer regarding allowable system test preasur09. <br />From <br />9 <br />BStation <br />Chari <br />❑ <br />Tank ManulaCtwat's Chin <br />❑ <br />Company Enginasring Oats <br />❑ <br />Chatis suppllsd with <br />❑ <br />/a 8 7 Z <br />Temperature In Tank <br />Other __ <br />Toter G.hone <br />Gellorte <br />A. need" 1 <br />9y,f /o,3vy <br />TDP ofF � Zt'� <br />w,q r6 <br />104 <br />' v z <br />Transfer total to line 25a <br />20. EXTENSION HOSE SETTING <br />9 <br />Tank top 10 grade* .................................. <br />In <br />Extend tale on suedon tube g• W more <br />e <br />A `JaLI sJ,E <br />below lank top ...................................... <br />In. <br />'If fM pipe extends above grade, use lop of 111 <br />Waw Tampor.luts *flat Cbeuts loo <br />.y <br />22, Tharmal•Sensor reading *her circulation <br />/a 8 7 Z <br />Temperature In Tank <br />digits <br />80 -81 .F <br />23. Dight per IF In range of expected change <br />Between <br />13/Y <br />lot M od Product <br />dighs <br />"QE' <br />OF EXPANSION (Complete alter circulation) <br />24a. melted A.P.I. Gravity <br />Observed A.P.. rovity....I.............................. <br />21. VAPOR RECOVERY SYSTEM ® Stage 1 ® stood if <br />24b. COEFFICIENT OF EXPANSION <br />RECIPROCAL METHOD <br />A `JaLI sJ,E <br />Type of Product ........................................ <br />Ca recled A.P.I. Gravity <br />Waw Tampor.luts *flat Cbeuts loo <br />.y <br />hydrometer Employed .................................. <br />N <br />Temperature In Tank <br />Q ®• <br />y F <br />Allan Circulation........................................ <br />Cosfficlanl of Water <br />lot M od Product <br />);7. •F <br />Temperature of Sample ................................. <br />❑ ❑ No TransOn COE to Line 250. \ <br />Transfer COE to Lins 25b. <br />v <br />Difference 1r1.i......................................... <br />—3 .F <br />Joist quantity M Coalhclonl of expansion lot <br />" <br />Observed A.P.I. Gravity <br />pvr IF <br />page a 6) , <br />A <br />= . o Z Zy 8! This Is Z Z <br />Reciprocal <br />® <br />ea Z y , / 1189 _ . <br />b• 933s1z y <br />Total quantity In Iteclptocal <br />Volume Change in <br />full lank its or Ili <br />this tank par IF <br />Transfer to Line les. <br />►1 <br />Hydromolsremploye` ............................ <br />24c. FO -TESTING R WATER ase Table C t O <br />Observed sample Tdmpersturd ............. •F <br />Ca recled A.P.I. Gravity <br />Waw Tampor.luts *flat Cbeuts loo <br />.y <br />;;F. From Table A .............................1 <br />Table C <br />ccHICIMt of Expansion <br />Cosfficlanl of Water <br />lot M od Product <br />Table O ...............................................:... <br />,.�. <br />From Table a ............................................ <br />\ <br />❑ ❑ No TransOn COE to Line 250. \ <br />Transfer COE to Lins 25b. <br />Added Surtaclsd? Yee <br />25. (a) of (b) <br />a (C) gallate <br />Joist quantity M Coalhclonl of expansion lot <br />Volume Change In this tank <br />Not lank/(tg a 121 involved productt/ <br />pvr IF <br />�/ <br />93 3 S/ Z 7 3 / 7 <br />A <br />= . o Z Zy 8! This Is Z Z <br />26. Lf `�' , <br />® <br />Volume change per If (23 or tab) Digits per IF In lost <br />Volume Cltanos pat dioh teat <br />Cumpu(. 1 A daffind t.t.Cne I.Ctor 1.) <br />nano. 123) <br />. <br />9 <br />ri <br />
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