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Starting at the tank and moving towards the dispenser <br /> describe each section of piping on a separate page <br /> Tank# ' of <br /> PIPING <br /> PIPING SECTION # of <br /> Describe the placement of the piping: <br /> ❑ Underground 0 Aboveground 0 Floating ❑ Underwater <br /> $ <br /> "suspended under dock 0 Above/along side the dock 0 Other <br /> How does the piping adapt to water level fluctuations? <br /> unnecessary <br /> / <br /> 0 Excess flexible piping that is not on hose reel ❑ Hose Reel v <br /> ❑ Connected/disconnected manually <br /> 0 Other_ <br /> Estimated length of this section of piping: <br /> ❑0-50 feel NO 0-150 feet 0 150-250 feet O 250-350 feet ❑ 350-500 feet ❑>500 feet <br /> W ❑DW (see glossary of terms for specific definition of DW) <br /> piping construction: <br /> Primary piping: <br /> 0 Rubber Hose Oetallic ❑ Non-Metallic Rigid O Non-Metallic Flexible O Other <br /> / ❑Unknown <br /> Is the primary piping protected against corrosion? O Yes <br /> If so,how? <br /> Secondary piping: 1�6o Secondary piping <br /> ❑ Rubber Hose ❑ Metallic ❑ Non-Metallic Rigid O Non-Metallic Flexible ❑Other <br /> n? O Yes O No ❑Unknown <br /> Is the secondary piping protected against corrosio <br /> If so,how? <br /> 11'o Monitoring <br /> Type of monitoring: / <br /> ❑Mechanical Frequency <br /> ❑Electronic Frequency <br /> ❑Line Tightness Test Frequency <br /> ❑Visual Frequency <br /> Location of piping transition point: <br /> "1Overwaler 0 Over land ❑ Underwater <br /> Is the piping transition secondarily contained? <br /> ❑Yes No If so,how? <br /> Comments <br /> 10/23100 <br /> SWRCB <br />