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COMPLIANCE INFO_1986 - 1997
Environmental Health - Public
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EHD Program Facility Records by Street Name
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DR MARTIN LUTHER KING JR
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440
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2300 - Underground Storage Tank Program
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PR0231055
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COMPLIANCE INFO_1986 - 1997
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Last modified
11/27/2019 3:43:50 PM
Creation date
11/27/2019 1:44:41 PM
Metadata
Fields
Template:
EHD - Public
ProgramCode
2300 - Underground Storage Tank Program
File Section
COMPLIANCE INFO
FileName_PostFix
1986 - 1997
RECORD_ID
PR0231055
PE
2361
FACILITY_ID
FA0002321
FACILITY_NAME
Delta arco
STREET_NUMBER
440
Direction
W
STREET_NAME
DR MARTIN LUTHER KING JR
STREET_TYPE
BLVD
City
STOCKTON
Zip
95206
APN
16503003
CURRENT_STATUS
01
SITE_LOCATION
440 W DR MARTIN LUTHER KING JR BLVD
P_LOCATION
01
P_DISTRICT
001
QC Status
Approved
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EHD - Public
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14. <br /> e Name of Supplier.Owner or Dealer Address No.and Street(3) City Stale Date of Test <br /> 15. TANK TO TEST 15a, BRIEF DDIIIAGRAM OF TANK FIELD 16. CAPACITY F`° <br /> '.,K.;..,•L;I Gf���? i»/dI�LL rJ� �� Station Chart <br /> Nominal Capacity ❑ Tank Manufacturer's Chart <br /> �:y`.-1, • Identity by posilbn1:1allons <br /> r c.•�';..t1 J v�� ��� Company F-ngineering Data <br /> .,/ - • r ❑ Charts supplier <br /> =ti :���r -• �C� By most accurate /7 (��� d with '. <br /> n' Brand and Grads capacity chart ovalleble 7 d 1:1 Other <br /> j <br /> Oeftoro <br /> 4 <br /> 17. FILL-UP FOR TEST Total Gallons <br /> ( Gallons ea.Reading <br /> FR Slick Water Bottom <br /> ._..f.._ before Flll-up in. ••--�� ��-- In. <br /> inventoryY Y�LO <br /> Gallons Tank Diameter <br /> 18. SPECIAL CONDITIONS AND PROCEDURES TO TEST THIS TANK Metal,In tank Llne(s)being tested with LVLLT <br /> l See manual sections applicable.Check below and record procedure In log(27). 1 Nigh water table In tank excavation ��• <br /> use maximum allowable lest Drassure for alt Iesls. <br /> Transfer total to line 254 <br /> 1� 1 Four pound rule does not apply to doublewaned tanks. 19. TANK MEASUREMENTS FOR <br /> ''•''� I <br /> Complete section below: TSTT ASSEMBLY /•��� 21. VAPOR RECOVERY SYSTEM $age I stage u <br /> Bottom of tank to grade' ............................ d In. <br /> Add 30'for"f"probe way............I............ ;�/�300 In. 24b. COEFFICIENT OF EXPANSION <br /> 1.is four pound rule reduired7 yes L^J No ❑ Total tubing to assemble—approximate. eIn. RECIPROCAL METHOD <br /> Typeof Product ........................................ <br /> -' 2.Height to 12"mark from bottom of lank In. <br /> 20. EXTENSION HOSE SETTING n <br /> ` Tank top to grade'.................................. In. Hydrometer Employed..................................��L H <br /> �.Pressure et bottom of lank P.S.I. Extend hose on auction tube 6"or more �// Temperature In Tank ] 0- <br /> • v •`� After Circulation........................................ ,+ F <br /> below tank top...................................... In. <br /> Temperature of Sample................................. C •F <br /> a. Pressure at lop of lank /. 6 f p S I 'If Fill pipe extends above grade,use top of lilt. [� <br /> 22. Thermal-Sensor reading after circulation Difference(•/-)......................................... J •F <br /> }G(7 Ig"s <br /> Depth of burial �c+ In. �7//L -F Observed A.P.I.Gnv ay ��. <br /> ................................. <br /> 23. Dlplls per IF In range of expected change rout Flags Reel <br /> In. P s�z <br /> Tank dict. <br /> digits <br /> --,COEFFICIENT OF EXPANSION (Complete after circulation) 993 70 LZJ1;A,73 <br /> r // 24 . orrected A.P.I.Gravity Total quantity In Reciprocal Volume change In <br /> .r Water table //D6 in. lull tank(te or I7) this lank per IF <br /> Observed A.P. revfty................................... Transfer to Line 26a. <br /> NOTES: <br /> Hydrometer employed.... ............................. H <br /> 24C. FO TING WITH WATER ...Table c a D <br /> Observed Sample Temperature ...... ................ •F <br /> Corrected A.P.I.Gravity Water Temperature after Circubt <br /> •.•... . @ 60•F,From Table A............................... ... Table C ................................. ............ •F <br /> Coefficient of Expansion Coefficient of Wafer <br /> The above calculations are to be used for dry soil conditions to for Involved Product Table O............................................ <br /> •I+. .... <br /> establish positive pressure advantage. using the lour From Table B............................................ , <br /> Po D A p pound � <br /> rule to compensate for the presence of subsurface water In the tank Transfer COE to Line 25b. Added SurlactanI ❑yes ❑No Transfer COE to L 250. <br /> ares. <br /> 1•� iL '' <br /> Refer to N.F.P.A. 30, Sections 2-3.2.4 and 2-7.2 and the tank 25• (a) x (b) _ (C) <br /> gallons <br /> manufacturer regarding allowable system test pressures. Total quantity In Coefficient of expansion for Volume change In this lank <br /> .y�v.:v:• i ' - full tank(te or 17) Involved product per•F <br /> `'iS}~ .ansy_. r 26. (a) �. ���i� 73� <)Z� a �.���—J �•[L� T-(Lf <br /> �,..,.....w. Thla Ic <br /> 1i.��.••j Volume change per•F(25 or 24b) Digits per•F In test Volume change per digit teat <br /> 'Y D rf' :•'�!�'' _ Range(23) Compuls to 4 decimal places. fxctw(a) <br />
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