SUPERCRITICAL CO2 CYCLES FOR GAS TURBINE COMBINED CYCLE

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SUPERCRITICAL CO2 CYCLES FOR GAS TURBINE COMBINED CYCLE ( supercritical-co2-cycles-for-gas-turbine-combined-cycle )

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SUMMARY AND CONCLUSIONS With appropriate cycle design and economic optimization, supercritical CO2 power cycles can generator more power than existing steam cycles in combined cycle gas turbine applications. The small size of sCO2 turbomachinery, the simplicity of the exhaust heat exchanger, and the potential to operate in entirely water-free environments result in reduced plant footprint, simplified and flexible installation and operation. With continued development in advanced heat exchangers, and further developments that occur with product maturity, the advantages of using sCO2 cycles as high efficiency, low cost and low environmental impact power generation systems will become even clearer. REFERENCES [1] Held T. J., 2014, “Initial Test Results of a Megawatt-Class Supercritical CO2 Heat Engine,” The 4th International Symposium - Supercritical CO2 Power Cycles. [2] Thermoflow, 2015, “GT-Pro Gas Turbine Combined Cycle Analysis Software.” [3] “Siemens achieves again record efficiency with the Samsun H-class power plant in Turkey” [Online]. Available: http://www.siemens.com/press/PR2015030146PGEN. [4] Angelino G., 1968, “Carbon Dioxide Condensation Cycles for Power Production,” Journal of Engineering for Gas Turbines and Power, 90(3), pp. 287–295. [5] Feher E. G., 1968, “The Supercritical Thermodynamic Power Cycle,” Energy Conversion, 8(2), pp. 85–90. [6] Combs O. V., 1977, “An Investigation of the Supercritical CO2 Cycle (Feher Cycle) for Shipboard Application.” [7] Dostal V., 2004, “A Supercritical Carbon Dioxide Cycle for Next Generation Nuclear Reactors.” [8] Dostal V., Driscoll M., and Hejzlar P., 2004, A Supercritical Carbon Dioxide Cycle for Next Generation Nuclear Reactors. [9] Turchi C., Ma Z., and Dyreby J., 2009, “Supercritical CO2 for Application in Concentrating Solar Power Systems,” Supercritical CO2 Power Cycle Symposium. [10] Seidel W., 2011, “Model development and annual simulation of the supercritical carbon dioxide Brayton cycle for concentrating solar power applications.” [11] Persichilli M., Held T., Hostler S., Zdankiewicz E., and Klapp D., 2011, “Transforming Waste Heat to Power through Development of a CO2-Based-Power Cycle,” Electric Power Expo, pp. 10–12. 18

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