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Applications Engineering Bulletin Fuel Gas Booster General Application Information

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Applications Engineering Bulletin Fuel Gas Booster General Application Information ( applications-engineering-bulletin--fuel-gas-booster-general- )

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Copeland Fuel Gas Booster General Application Information General Installation Guidelines 1. The system must be installed on a level surface. 2. The furnished purge kit or equivalent must be installed with every system. 3. It is recommended that pipe unions or other suitable coupling devices be used to connect the system to the inlet and discharge plumbing. 4. The AC powered ABX and DBC model systems require 480VAC and 400VAC respectively, with wiring sized for a 20-amp load. 5. A common ground must be connected between the system chassis to the microturbine chassis. In addition, this ground must be comply with NEC or other applicable codes. Capstone Model 60 Microturbine Installations The DC power BBX model system that is used with the Capstone Model 60 Microturbine receives electrical power from the microturbine 760 volt DC bus. A100 inch cable kit is available from Capstone to connect the system to the microturbine. This kit includes cables and conduit for the electrical power for the Run and Fault signals. The distance between the microturbine and the system should not exceed 100 inches. The system and the Model 60 must be solidly grounded together. Do not use earth ground on the Copeland system. Minimum Inlet Pressure 4”H20 To comply with regulations that prohibit placing a natural gas pipeline under negative pressure the system is equipped with a Low Inlet Gas Pressure switch. This switch opens at 2”H20 on pressure fall and closes at 4”H20 on pressure rise. The gas supply to the system must be must be capable of maintaining a minimum Inlet Pressure of 4”H20 during peak demand. Maximum Inlet Pressure 15 psig Increasing the inlet gas pressure does not improve system efficiency. If the compressor is operating at minimum speed and the demand for fuel is satisfied the Bypass Valve opens returning surplus compressed gas to the compressor inlet. Increasing the inlet pressure beyond that required to support peak demand results in increased power consumption. For sites with multiple microturbine or lower energy content gas the increased fuel demand can be support by raising the inlet gas pressure up to 15 psig. Form No. 2001-88 Page 2 of 4 Revision 0 Issued 8/10/01 Copeland is a registered trademark of Copeland Corporation. ¤2001 Copeland Corporation.

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