Summary of Results from Testing a 30-kW-Microturbine and Combined Heat and Power (CHP) System

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Summary of Results from Testing a 30-kW-Microturbine and Combined Heat and Power (CHP) System ( summary-results-from-testing-30-kw-microturbine-and-combined )

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Federal Technology Alert Fig. 4. Startup power output and turbine speed. (Source: “DER Performance Testing of a Microturbine-Based Combined Cooling, Heating, and Power (CHP) System,” Proceedings of Power System 2002 Conference, Clemson, SC, March 2002. increments. The results are presented in Table 1, which contains the microturbine’s power setting, measured power output, turbine speed, phase voltages and currents (a, b, and c), and rectified dc voltage and standard deviations for some of these values. It should be noted that the outdoor temperatures were below the ISO temperature of 15oC (59oF) that is the typi­ cal rating condition for microturbines. The measured emissions at the various power set­ tings are also presented. Emission characteristics are discussed in Sect. 6. In the grid-dependent (grid-connected) mode, for a power out­ put range of 30 to 20 kW, the microturbine was found to operate at a power factor of 98% with a ±0.86% standard deviation; and for power output range of 15 to 5 kW, generated at 97% with a standard deviation of ±0.80%. The data in Table 1 show that the unit’s efficiency decreases with the power output level. At the full power setting of 30kW, the microturbine can produce ~28 kW at an Fig. 5. Shutdown power output and turbine speed. (Source: “DER Performance Testing of a Microturbine- Based Combined Cooling, Heating, and Power (CHP) System,” Proceedings of Power System 2002 Conference, Clemson, SC, March 2002. 8–– FEDERAL ENERGY MANAGEMENT PROGRAM .

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