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ADVANCED MICROTURBINE SYSTEMS Final Report for Tasks 1 Through 4 and Task 6

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ADVANCED MICROTURBINE SYSTEMS Final Report for Tasks 1 Through 4 and Task 6 ( advanced-microturbine-systems-final-report-tasks-1-through-4 )

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Section 3.0 Integration and Test of Advanced Microturbine System The object was to achieve 40% electrical efficiency (LHV at ISO day) from an AMS that consisted of two Capstone C200 microturbines integrated with a water-cooled condenser ORC bottoming system. Two C200 Beta units (identified as unit #3 or #4) were received in late 2004 while UTRC provided the ORC. 3.1 System Integration, Installation, and Instrumentation A test site at the UTRC CHP Laboratory was prepared for the integrated AMS system. Two C200 engines were mounted on an external concrete pad, with the manifolded exhaust ducted to the evaporator mounted on the CHP Laboratory roof. The top, left image of Figure 3.1.1 depicts the pad and the junction box for the C200 electrical power. The bottom, left image shows the evaporator. The right side of the figure shows the turbine, ORC recuperator, refrigerant pump and pump inverter mounted on the condenser inside the CHP Laboratory. The system was instrumented according to the PID of Figure 3.1.2. The ORC was instrumented exhaustively to calculate the turbine aerodynamic efficiency, condenser performance, evaporator performance, pump performance and recuperator performance. This figure shows that the ORC evaporator exhaust was coupled to a blower on the down-stream side. The blower was turned on or off or its speed was adjusted to set various levels of system backpressure. The entire exhaust assembly, including the evaporator, was insulated to minimize heat loss. Figure 3.1.1 Installation and integration of C200/ORC AMS 71

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