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COMPLIANCE INFO_1985-1998
Environmental Health - Public
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KETTLEMAN
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2300 - Underground Storage Tank Program
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PR0231342
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COMPLIANCE INFO_1985-1998
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Last modified
11/4/2021 2:57:00 PM
Creation date
6/3/2020 9:46:52 AM
Metadata
Fields
Template:
EHD - Public
ProgramCode
2300 - Underground Storage Tank Program
File Section
COMPLIANCE INFO
FileName_PostFix
1985-1998
RECORD_ID
PR0231342
PE
2361
FACILITY_ID
FA0000392
FACILITY_NAME
FLAMES LIQUOR
STREET_NUMBER
1301
Direction
W
STREET_NAME
KETTLEMAN
STREET_TYPE
LN
City
LODI
Zip
95242
APN
03104030
CURRENT_STATUS
01
SITE_LOCATION
1301 W KETTLEMAN LN
P_LOCATION
02
P_DISTRICT
004
QC Status
Approved
Scanner
SJGOV\rtan
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\MIGRATIONS\UST\UST_2361_PR0231342_1301 W KETTLEMAN_1985-1998.tif
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EHD - Public
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14. r—1 - / I <br />Name of Supplisur. Owner or Dealer <br />15. TANK TO TEST <br />1CZVA ' saj-�VA , <br />Identity by position <br />Brand and Grade <br />17. FILL -UP FOR TEST <br />Sock Water smorn QD Jil <br />before Fill -up in. <br />Address No. and Street(s) <br />15a. BRIEF DIAGRAM OF TANK FIELD <br />0 <br />0115 — In. <br />Tank Diameter <br />L7:11J-1 00, 3 — I &. Sits <br />City State Date of Test <br />16. CAPACITY <br />Nominal Capacity 0 0 C—) 0 <br />I Gallons <br />By most accurate <br />capacity chart available <br />Gallons <br />18. SPECIAL CONDITIONS AND PROCEDURES TO TEST THIS TANK 0 Water in tank 11 Une(s) being tested with LVLLT <br />In <br />E]High water table In tank excavation <br />M Stage 11 <br />See manual sections applicabia Check below and record procedure log (27). <br />—In. <br />use maximum allowable test pressure for all tests. <br />19. TANK MEASUREMENTS FOR <br />_3 <br />=23. <br />Four pound rule does not apply to doublewallad tanks. <br />TETT ASSEMBLY <br />in. <br />Com section below: <br />— H <br />. plate <br />Bottom of tank to grade' ................. <br />After Circulation ........................................ <br />Add 30" for "r probe easy .......................... <br />In. <br />1. is four pound rule required? Y. ❑ .0 <br />Total tubing to assemble — approximate ............. <br />Temperature of Sample ................................. <br />_.F <br />20. EXTENSION HOSE SETTING <br />Difference ..................................... <br />* Haight to 12- mark from bottom of tank in. <br />this tank W IF <br />Observed A.P.I. Gravity ..................... <br />Tank top to grade* .................................. <br />Hydrometer employed ................................... <br />H <br />Extend hose on suction tube G" or more <br />* Pressure at bottom of tank P.S.I. <br />24c. FOR TESTING WITH WATER <br />"eTab;o c & o <br />below tank top ...................................... <br />4. Pressure at top of tank P.S11. <br />'if Fill pipe Wends above grade. use top of fill. <br />L <br />r— <br />22. Thermal -Sensor reading after circulation <br />@ 60°F. From Table A .................................... <br />of burial in. <br />jis. — In, <br />tab" kn <br />NOTES. <br />The above calculations are to be used for dry soil conditicirle to <br />establish a poarthie pressure advantage, or when using the four pound <br />rule to compensate for the presence of subsurface water In the tank <br />Refer to NLF-PJL 306 Secbons 2-3.2.4 and 2-7.2 and the tank <br />manufacturer regarding allowable aptern test lZralseursa. <br />From <br />❑ Station Chart <br />Tank Manufacturees Chart <br />ElCompany Epginearing Data <br />El Charts supphad with <br />❑ Other <br />I vim "lionit <br />Gallons ea. Readiniq_,__ <br />I'Ventory <br />Transfer total to line 25a Qi L <br />Q <br />_in. <br />30 in, <br />21. VAPOR RECOVERY SYSTEM 1:1 Stage I <br />M Stage 11 <br />24b. COEFFICIENT OF EXPANSION <br />—In. <br />RECIPROCAL METHOD <br />_3 <br />=23. <br />Typeof Product ........................................ <br />in. <br />Hydrometer Employed .................................. <br />— H <br />Temperature in Tank <br />digits <br />After Circulation ........................................ <br />_-F <br />In. <br />24a. Corrected A.P.I. Gravity <br />Temperature of Sample ................................. <br />_.F <br />Difference ..................................... <br />_.F <br />digits <br />I— (. 4 IF <br />Observed A.P.I. Gravity ................................. <br />_3 <br />=23. <br />Digits per *F In range of expected change <br />Reciprocal — Page# <br />digits <br />COEFFICIENT OF EXPANSION (Complete after circulation) <br />+ <br />24a. Corrected A.P.I. Gravity <br />Total quantity in Reciprocal <br />Volume change in <br />I <br />full tank (16 or 17) <br />this tank W IF <br />Observed A.P.I. Gravity ..................... <br />Transfer to Line 26e. <br />Hydrometer employed ................................... <br />H <br />24c. FOR TESTING WITH WATER <br />"eTab;o c & o <br />Observed Sample Temperature ......................... -F <br />Corrected A.P.I. Gravity <br />L <br />Water Temperature after Circulation <br />@ 60°F. From Table A .................................... <br />— <br />Table C ................................................ <br />_*F <br />Coefficient of ExpansionCoefficient <br />for Involved Product <br />s S4 e. b V <br />of Water <br />Table D ................................................. <br />FromTable 8 ............................................ <br />Transfer COE to Une 25b. <br />Added Surfactant? 0 Yes C1 No Transfer COE to Uri 2% <br />� <br />(c) 16 MAQ-3 <br />25. a) <br />. @- <br />_- <br />gia. <br />Total quantity In <br />Coefficient at expansion for <br />Volume, clusage In this tank <br />W tank (16 or 17) <br />1; 44 <br />Involved! product <br />1 <br />3, 2, k4 <br />par -F <br />0% %1 lei <br />26. (a) _ <br />+ <br />- <br />This Is <br />—1,—o rhIprys IF (25 w 24bl <br />Digits Par , F in teat <br />Vclumo char%go per c5gift <br />1152 <br />
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