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14. <br /> Name of Supplier.Owner or Dealer Address No and Street(a) City State Date of Test <br /> 15. TANK TO TEST 15a. BRIEF DIAGRAM OF TANK FIELD 16. CAPACITY From <br /> ❑ Station Chart <br /> Nominal Capacity t� r t Tank Manufacturer's Chart <br /> Identit by position Gallons <br /> ❑ Company Engineering Data <br /> — llz — ----- By most accurate Charts supplied with <br /> rand and rade / � <br /> capacity chart available ❑ Other <br /> Gallons <br /> 17. FILL-UP FOR TEST Total Gallons <br /> Gallons ea.Reading <br /> Stick Water Bottom <br /> before Fill-up _ _ _in. 1,rF'' in. Inventory <br /> Gallons Tank Diameter <br /> 18. SPECIAL CONDITIONS AND PROCEDURES TO TEST THIS TANK El Water in tank ❑ Line(s)being tested with LVLLT G 11-0 <br /> See manual sections applicable.Check below and record procedure in log(27). ❑High water table in tank excavationUse maximum allowable tea'pressure for all tests 19. TANK MEASUREMENTS FOR Transfer total to line 25a <br /> Four pound rule does not apply to doublewalled tanks <br /> TSTT ASSEMBLY //,' 21. VAPOR RECOVERY SYSTEM ❑Stage I ❑stage II <br /> Complete section below 7 r . <br /> Bottom of tank to grade' ............................ ��tn. <br /> Add 30"for"T"probe assy........................... 30 in. 24b. COEFFICIENT OF EXPANSION <br /> 1 Is four pound rule required? Yes No ❑ .fi RECIPROCAL METHOD <br /> Total tubing to assemble—approxi ate............. In. <br /> Type of Product ........................................ �� <br /> `4 <br /> 2.Height to 12"mark from bottom o1 tank in 20. EXTENSION HOSE SETTING <br /> Ir_ <br /> Tank top to grade'............ Hydrometer Employed 1 H <br /> . 1 Extend hose on suction tube 6"or more Temperature in Tank <br /> 3. Pressure at bottom of tank VVV P.S.1. After Circulation........................................ F <br /> below tank top...................................... in. Cl/ <br /> 4. Pressure at top of tank PS'l <br /> 'I1 Fill pipe extends above grade.use top of fill. Temperature of Sample................................. t °F <br /> 22. Thermal-Sensor reading after circulation Difference(+/-).............................. .......... °F <br /> !'f <br /> Re � <br /> Depth of burial f in. Observed A.P.I.Grev ............... <br /> 23. Digits per°F in range of expected change — t n` — Reciprocal150025; Page <br /> Tank dia in <br /> COEFFICIENT OF EXPANSION (Complete after circulation) <br /> 24a. Corrected A.P.I.Gravity Total quantity in Reciprocal Volume change in <br /> Water table _ in full tank 116 or 17) this tank per°F <br /> Observed A.P.I.Gravity.............................. — — Transfer to Line 26a. <br /> NOTES: <br /> Hydrometer employed................................... __ — _.H <br /> 24c. FOR TESTING WITH WATER see Table C 8 D <br /> Observed Sample Temperature ............._ _ -_ 'F <br /> Corrected A.P.I.Gravity Water Temperature after Circulation <br /> @ 60°F.From Table A................................. __ Table C ................................................ _ __ °F <br /> Coefficient of Expansion Coefficient of Water <br /> The above calculations are to be used for dry soil conditions to <br /> for Involved Product Table D......_........................................ <br /> establish a positive pressure advantage,or when using the tour pound <br /> From Table 8............................................ . , <br /> rule to compensate for the presence of subsurface water in the tank Transfer COE to Line 25b. Added Surfactant? ❑Yes ❑No Transfer COE to Line 25b. <br /> area. <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) gallons <br /> manufacturer regarding allowable system test pressures. Total quantity in Coefficient of expansion for Volume change in this tank <br /> full tI V(16 oorr� l17)) Involved product per°F <br /> _ 26. (a)5, / _L Q / - 1 A = /C ;�`-�1%/ This is <br /> Volume change per°F(25 or 24b) Digits per°F in test Volume change per digit test <br /> Range(23) Compute to 4 decimal places. factor(a) <br />