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COMPLIANCE INFO_1986-1996
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2300 - Underground Storage Tank Program
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PR0231127
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COMPLIANCE INFO_1986-1996
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Last modified
3/10/2021 12:21:10 PM
Creation date
6/23/2020 6:44:45 PM
Metadata
Fields
Template:
EHD - Public
ProgramCode
2300 - Underground Storage Tank Program
File Section
COMPLIANCE INFO
FileName_PostFix
1986-1996
RECORD_ID
PR0231127
PE
2361
FACILITY_ID
FA0003611
FACILITY_NAME
PARKWOODS GAS & FOOD
STREET_NUMBER
1612
Direction
W
STREET_NAME
HAMMER
STREET_TYPE
LN
City
STOCKTON
Zip
95209
APN
07728002
CURRENT_STATUS
01
SITE_LOCATION
1612 W HAMMER LN
P_LOCATION
01
P_DISTRICT
002
QC Status
Approved
Scanner
SJGOV\rtan
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\MIGRATIONS\UST\UST_2361_PR0231127_1612 W HAMMER_1986-1996.tif
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EHD - Public
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14. <br />Name of Supplier, Owner or Dealer Address No. and Street($) City State Date of Test <br />15. TANK TO TEST j 15a. BRIEF DIAGR M OF ANK FIELD 16. CAPACITY From <br />Station Chart <br />d <br />rC <br />Nominal Capacity _ ...Tank Manufacturer's Chart <br />Identityr <br />y position Gallons Cl Company Engineering Data <br />C C..�" �.^°t.. e ❑ Charts supplied with <br />By most accurate <br />rand and Gradepacity chart available `" a ❑ Other <br />Gallons <br />17. FILL -UP FOR TEST <br />Stick Water Bottom • ��I -. <br />before Fill -up in. in. Inventory <br />40allons Tank Diameter <br />18. SPECIAL CONDITIONS AND PROCEDURES TO TEST THIS TANK ❑ Water in tank ❑ Line(s) being tested with LVLLT <br />See manual sections applicable. Check below and record procedure in log (27). ❑ High water table in tank excavation <br />Lyemax.mum allowable test pressure for all tests. 19. TANK MEASUREMENTS FOR <br />~ Four pound rule does not apply to doublewalled tanks. <br />TSTT ASSEMBLY <br />Complete section below: 141 <br />Bottom of tank to grade' ............................ L in. <br />Add 30" for 'T' probe easy ........................... 30 in. <br />1. Is four pound rule required? Yes 0 No ❑ Total tubing to assemble — approximate ............. _ in. <br />2. Height to 12" mark from bottom of tank <br />3. Pressure at bottom of tank <br />4. Pressure at top of tank <br />of burial <br />dia. <br />table <br />NOTES: <br />in. <br />20. EXTENSION HOSE SETTING <br />�e <br />in. <br />Tank top to grade' .................................. <br />This is <br />,® <br />Extend hose on suction tube 6" or more <br />Compute to 4 decimal places. <br />P. S.1. <br />below tank top ...................................... <br />in. <br />H <br />Fill pipe extends above grade, use top of fill. <br />_ P.S.I. <br />ZZ. Thermal -Sensor reading after circulation <br />digit <br />/ <br />in. <br />.,1" 11—g <br />-+'— -F <br />^.74 <br />23. Digits per °F in range of expected change <br />1We <br />digits <br />COEFFICIENT OF EXPANSION (Complete after circulation) <br />_ in. <br />' <br />24a. Corrected A.P.I. Gravity <br />in. <br />Observed A.P.I. Gravity ................................... <br />Hydrometer employed ................................... <br />H <br />Observed Sample Temperature ......................... <br />°F <br />The above calculations are to be used for dry soil conditions to <br />establish a positive pressure advantage, or when using the four pound <br />rule to compensate for the presence of subsurface water in the tank <br />area. <br />Refer to N.F.P.A. 30, Sections 2-3.2.4 and 2-7.2 and the tank <br />manufacturer regarding allowable system test pressures. <br />Corrected A.P.I. Gravity <br />@ 60°F, From Table A...... <br />Gallons <br />Transfer total to line 258 <br />Total Gallons <br />ea. Reading <br />r9 <br />21. VAPOR RECOVERY SYSTEM ❑ Stage I LJ Stage u <br />24b. COEFFICIENT OF EXPANSION <br />gallons <br />RECIPROCAL METHOD <br />per °F a <br />+-v <br />This is <br />r -r <br />Type of Product ........................................ <br />Compute to 4 decimal places. <br />factor (a) <br />H <br />Hydrometer Employed .................................. <br />Temperature in Tank <br />/ <br />Atter Circulation ........................................ <br />°F <br />Temperature of Sample ................................. <br />°F <br />Difference ('/-) ......................................... <br />Observed A.P.I. Gravity ................................. <br />1 <br />Reciprocal !g(. <br />A) <br />page If <br />p <br />•'��� +C, <br />,p <br />,6 <br />Total quantity in <br />Reciprocal <br />Volume change in <br />full tank If or 17) <br />this tank per °F <br />Transfer to Line 26a. <br />24c. FOR TESTING WITH WATER see Table C a D <br />Water Temperature after Circulation <br />Table C .......................... <br />Coefficient of Expansion Coefficient of Water <br />for Involved Product Table Or .... .. .. ..................................... <br />— <br />FromTable B ............................................ -- <br />Transfer COE to Line 25b. Added Surfactant? ❑ Yes ❑ No Transfer COE to Line 25b. <br />25. (a) x (b) <br />Total quantity in Coefficient of expansion for <br />full tank (16 or 17) involved product <br />26. »r <br />Volume change per IF (25 or 24b) Digits per °F in test <br />Range (23) <br />_ (c) <br />gallons <br />Volume change in this tank <br />per °F a <br />+-v <br />This is <br />Volume change per digit <br />test <br />Compute to 4 decimal places. <br />factor (a) <br />°F <br />
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