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C <br />L] <br />z <br />Cr <br />a <br />tu <br />u� <br />J <br />IL <br />14.,,, <br />Name of Supplier. Owner or Deatw <br />15. TANK TO TEST <br />Identity position <br />1• c.sc <br />Brand and Grade <br />17. FILL -UP FOR TEST <br />Stick Water Bottom <br />before Fill -up M. <br />to %" <br />Address his. and Street (a) <br />15a. BRIEF DIAGRAM OF TANK FIELD <br />City <br />state <br />of Test <br />16. CAPACITY FFrro`1m <br />stall" chart <br />Nominal Capacity v V ❑ Tank Manufacturer's Chart <br />Gallons <br />❑ .Company Engineering Data <br />By most accurate <br />CJ�' / Charts supplied with <br />1 capacity chart available ❑ Other <br />t Gallons <br />Total Gallons <br />Gallons aa. Reading <br />/Z Inventory �2 ' <br />Gallons Tank Diameter <br />18. SPECIAL CONDITIONS AND PROCEDURES TO TEST THIS TANK ❑ Water in tank ❑ meta) troMg tested with LVLLT <br />Sas manual sections applicable. Check below and record procedure in log (27). <br />Lisa maximum allowable test pressure for All tests. <br />Four pound rule does not apply to doublovalled tanks. <br />Complete section below: <br />1. is four pound rule required? <br />2. Height to 12" mark from bottom of tank <br />3. Pressure at bottom of tank <br />a Pressure at top of tank <br />of bunts <br />.71 <br />table <br />NOTES: <br />M. <br />P.S.I. <br />The above calculations are to be used for dry soil conditions to <br />establish a positive pressure advantage, o rwhen using the four pound <br />rule to compensate for the presence of subsurface water In the tank <br />Refer to NAPA. 30• Sections 2-3.P.4 and 2-7.2 and the tank <br />manufacturer regarding allowable system test pressures. <br />❑ High water table In tank excavat l :z 6� <br />19. TANK MEASUREMENTS FOR Transfer total to line 2sa <br />TSTT ASSEMBLY n 21. VAPOR RECOVERY SYSTEM ❑ step i ❑ image u <br />_ b " <br />B08ent1 of lank to graft ' ......... ...............• . in.. <br />Add 3o" for -r'probe aav ....... 30 In•l 24b. COEFFICIENT OF EXPANSION �/ <br />TOW tubing to •asAssemble,— approximate....:....... RECIPROCAL METHOD <br />Type of Product <br />20. EXTENSION HOSE SETTING <br />Tank top to graft*............... ................ —4=_ kkn Hydrometer Employed , ... ......... �t N <br />Extend hose on action tube 6". or more .. Temperature In Tank {' <br />below tank top , After Circulation ......... ......... .... ..... t...... V OF <br />T— in. <br />'If FIII pips extends Above grads. use top of fill. Temperature of Sample ........... .................. OF <br />22. Thermal -Sanaa reading After emulation Difference W-) ................ ............ ......... •F <br />digkd <br />•F observed A P.1. Gravity .... ........ ...... ...... � �/ <br />a` <br />23. fXglte Per OF In range of expected change Recap V" w 1 y Pegs es : <br />digits ^j, ! <br />COEFFICIENT OF EXPANSION (Complete after circulation)�I y sY j C� <br />24a. CorrectedAp.i. GrevttyTont quantity In Reciprocal Volume change In <br />' lug tank (16 or 17) "this lank per OF <br />Observed A.P.I. Gravity L ............. Transfer to Line 26L <br />Hydrometer employed ... ...... ............................ H <br />Observed Sample Temperature .... •F <br />24c. FOR TESTING WITH WATER ees Table C a D <br />i <br />Corrected A.P.I. Gravity Water Temperature aka Circulation <br />WF. From TAble A. Table C ...................................................... OF <br />CoefficUnt of Expansion . Coefficient of Water <br />for Involved Product . <br />From Table 8 ............................................ <br />Table D .... <br />Transfer COE to Lkro 251s. Added Surfactam? ❑ Yet ❑ Rb Transfer COE to line 25b. <br />25. (a) x (b) _ (c) <br />ons " <br />Tolef quantity in (/ Coefficient at expansion for Volume di a ge M this tank <br />bA 26. �Wnk (98 at/7) / / / knadv p ud _a _ pa •F j / fy' .s <br />13 <br />Vokmlro change per OF (25 or 24r) Digits per OF In lot Volume change per digit teat <br />Wild film Compote to 4 decimal please• lector (a) <br />