Binary conversion cycles for concentrating solar power technology
Tài liệu tham khảo
Angelino, 2006, Binary and ternary liquid metal-steam cycles for high-efficiency coal power stations, Proceedings of the IMechE, Part A, Journal of Power and Energy, 220, 195, 10.1243/09576509JPE132
Anonymous, 2003. Assessment of parabolic trough and power tower solar technology cost and performance forecasts. Sargent & Lundy LLC Consulting Group, Chicago, Illinois. NREL Report, NREL/SR-550-34440 (October).
Anonymous, 2007a. Lithium properties. <http://www-ferp.ucsd.edu/LIB/PROPS/PANOS/li.html>.
Anonymous, 2007b. US Geological Survey, Lithium Statistics 2006. <http://minerals.usgs.gov/ds/2005/140/lithium.pdf>.
Bevard, B.B., Yoder, G.L., 2003. Technology development program for an advanced potassium Rankine power conversion system compatible with several space reactor design. In: El-Genk, M.S. (Ed.), Space Technology and Applications International Forum – STAIF 2003, pp. 629–634.
Chopra, 1985, Liquid–metal corrosion, Fusion Technology, 8, 1956, 10.13182/FST85-A24572
Crane, R.A., 1991. Evaluation of in-situ thermal energy storage for lunar based solar dynamic systems. NASA Contractor Report CR 189054. Prepared for Lewis Research Center under Grant NAG3-851, March 1991.
Davis, J.P., Kikin, G.M., 1967. Lithium-boiling potassium Rankine cycle test operating experience. In: Advances in Energy Conversion Engineering, Intersociety Energy Conversion Engineering Conference, August 13–17, Miami Beach, Florida, pp. 87–95.
Fraas, 1966, A potassium-steam binary vapor cycle for a molten-salt reactor power plant, Transaction of the ASME, Journal of Engineering for Power, 355, 10.1115/1.3678548
Fraas, 1973, A potassium-steam binary vapor cycle for better fuel economy and reduced thermal pollution, Transactions of the ASME, Journal of Energy and Power, 53, 10.1115/1.3445694
Frutschi, 2005
Gaffert, 1952
Heller, 2006, Test and evaluation of a solar powered gas turbine system, Solar Energy, 80, 1225, 10.1016/j.solener.2005.04.020
Hernandez, 2006, Solar experimental methods for observing melting plateaux and associated temperature measurements for refractory oxides from 2000 to 3000°C, Journal of the European Ceramic Society, 26, 1043, 10.1016/j.jeurceramsoc.2004.12.027
Hernandez, 2003, Evaluation of the application of a solar furnace to study the suitability of metal oxides to be used as secondary reference points in the range 2000–3000°C, Measurement, 34, 101, 10.1016/S0263-2241(03)00027-7
Herrman, 2002, Survey of thermal energy storage for parabolic trough power plants, Transaction of the ASME, Journal of Solar Energy Engineering, 124, 93
Kesseli, J.B., Lacy, D.E., 1987. Advanced solar receiver conceptual design study. In: Proceedings of the 22nd Intersociety Energy Conversion Engineering Conference, Philadelphia, Pennsylvania, August 10–14, vol. 1, pp. 162–168.
Kribus, 1999, A multistage solar receiver: the route to high temperature, Solar Energy, 67, 3, 10.1016/S0038-092X(00)00056-6
Lacy, D.E., Coles-Hamilton, C., Juhasz, A., 1987. Selection of high temperature thermal energy storage materials for advanced solar dynamic space power systems, NASA Technical Memorandum 89886. Prepared for the 22nd International Energy Conversion Engineering Conference, Philadelphia, Pennsylvania, August 10–14.
Misra, A.K., Whittenberg, J.D., 1987. Fluoride salts and container materials for thermal energy storage applications in the temperature range 973–1400K. In: Proceedings of the 22nd Intersociety Energy Conversion Engineering Conference, Philadelphia, Pennsylvania, August 10–14, vol. 1, pp. 188–201.
Morozov, 1996, Solar dynamic Rankine space power plant using vapour–liquid metallic techniques, Space Technology, 16, 169, 10.1016/S0892-9270(96)00014-0
Müller-Steinhagen, 2004, Concentrating solar power. A review of the technology, Ingenia, The Informative Quarterly of The Royal Academy of Engineering, 43
Reynolds, W.C., 1979. Thermodynamic properties in SI. Stanfort University, Department of Mechanical Engineering, Stanford, CA 94305.
Song, J.S., Louis, J.F., Wendte, J.C., 1988. Liquid lithium thermal energy storage for solar dynamic power systems. In: Yogi Goswami, D. (Ed.), Proceedings of the 23rd Intersociety Energy Conversion Engineering Conference, July 31–August 5, 1988, Denver, Colorado, vol. 2, pp. 187–193.
Various Authors, 1969. Closed cycle gas turbines for all fuels: coal, oil, gas, nuclear. Escher Wyss 8023 Zurich, Switzerland, 52pp.
Wallin, W.E., Dustin, M.O., 1987. Advanced space solar dynamic power systems beyond IOC space station. In: Energy – New DFrontiers, 22nd Intersociety Energy Conversion Engineering Conference, Volume One of Four, August 10–14, Philadelphia, Pennsylvania, pp. 145–155.
Wiser, R., Bolinger, M., Cappers, P., Margolis, R., 2006. Letting the sun shine in solar costs: an empirical investigation of photovoltaic cost trends in California. Ernest Orlando Lawrence Berkeley National Laboratory Report, LBNL-59282, NREL/TP-620-39300 (January).