Concentrating Solar Power Commercial Application

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Concentrating Solar Power Commercial Application ( concentrating-solar-power-commercial-application )

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22. Kelly, B. (2006). Nexant Parabolic Trough Solar Power Plant Systems Analysis; Task 2 Comparison of Wet and Dry Rankine Cycle Heat Rejection. National Renewable Energy Laboratory, NREL/SR-550-40163 23 WorleyParsons (2008). P 15 and 16 show the water requirements for a dry cooled plant of 79 acre-ft per year and the corresponding annual energy production of 557,365 MWh. 24 California Energy Commission (2001), Environmental Performance Report of California’s Electric Generation Facilities. P700-01-001, July 2001. P. 39 25 Torcellini, P.; Long, N.; Judkoff, R. (2003). Consumptive Water Use for U.S. Power Production. NREL/TP-550-33905. 26 USEPA. AP-42. Compilation of Air Pollutant Emission Factors. Ch 13. Retrieved from : http://www.epa.gov/ttn/chief/ap42/ch13/final/c13s04.pdf 27 Maulbetsch, J. S., and M. N. DiFilippo. 2006. Cost and Value of Water Use at Combined-Cycle Power Plants. California Energy Commission, PIER Energy-Related Environmental Research. CEC-500- 2006-034. 28 Kelly, B. (2007). Comparison of Wet and Dry Rankine Cycle Heat Rejection. Nexant, Inc. A Bechtel- Affiliated Company. San Francisco, California. 29 New Mexico Central Station Solar Power: Summary Report. EPRI, Palo Alto, CA, PNM Resources, Inc., Albuquerque, NM, El Paso Electric Co., El Paso, TX, San Diego Gas & Electric Co., San Diego, CA, Southern California Edison Co., Rosemead, CA, Tri-State Generation & Transmission Association, Inc., Westminster, CO, and Xcel Energy Services, Inc., Denver, CO: 2008. 1016342.. p. 5-7 30 WorleyParsons. Wet and Dry Cooling Options for a 250 MW Thermal Plant.. and Provided by Bruce Kelly (email correspondence): GateCycle models for parabolic trough and central receiver plants which use air cooled condensers compared the relative performance at 70 F and 108 F for the two plant designs as follows: Parabolic Trough Plant: 1450 psig / 710 F / 710 F Rankine cycle 70 F ambient temperature 139.5 MWe gross plant output 0.374 gross cycle efficiency 0.082 bar condenser pressure 108 F ambient temperature 119.9 MWe gross plant 0.321 gross cycle efficiency 0.250 bar condenser pressure 0.860 hot day output / design day output 0.860 hot day efficiency / design day efficiency Central Receiver Plant: 1850 psig / 950 F / 950 F Rankine cycle 70 F ambient temperature 139.9 MWe gross plant output 0.412 gross cycle efficiency 0.082 bar condenser pressure 108 F ambient temperature 121.7 MWe gross plant 0.361 gross cycle efficiency 0.252 bar condenser pressure Page 23 of 24 0.870 hot day output / design day output 0.875 hot day efficiency / design day efficiency

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