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0 0*Turbine -I0 mo <br /> 0 0 _ <br /> 1 ' <br /> Turbine 0 <br /> Turbine <br /> ISul p S 2 p Sump — <br /> OO 1 3 I FLAT ANG METAL <br /> E <br /> / RON <br /> OI REQUIRED <br /> TO SUSPEND <br /> I PROBE o 0 <br /> (SIDE VIEW) 0 0 <br /> 1 <br /> 1 'I RECEPTACLES <br /> SUMP o FOR FOUR <br /> / SCREW- IN , PROBE <br /> 30 CABLE PLUGS <br /> Tank Pad z o o o I O <br /> TAPE / WEIGHT DOWN <br /> CABLE TO PREVENT <br /> QO 10 Feet - Min , Distance ACCIDENTAL O <br /> Per NFPA 30A MOVEMENT DURING <br /> LEAK TESTING <br /> ( PROBE CABLE TS - STS <br /> PN : 600 - 0200 SUMP TEST SYSTEM <br /> = 50 FEET) SPLIT RING o <br /> 0 0 � <br /> POWER CORD <br /> SAFETY = WITH A GROUNDED <br /> CONES 3 - PRONGED <br /> ` PLUG <br /> SUMP <br /> 40 <br /> © © •• o z STS - PRB - 12 <br /> GROUNDED LEAK TESTING <br /> 3 PRONG ® PROBE WITH : <br /> EXTENSION a TSP - SSP <br /> CORD REQ ' D STAINLESS <br /> STEEL FLOAT <br /> TS-STS <br /> SUMP TEST SYSTEM <br /> D <br /> TURBINE SUMP <br /> STP WITH TEST SOLUTION <br /> ( Side View ) <br /> BUILDING <br /> Figure 1. 3 Typical Leak Detection Probe — Turbine Sump Installation Figure 1. 4 Leak Detection Probe Installation <br /> Overview Turbine Sump <br /> — ❖ — <br />