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Thermal Energy Storage Systems for Peak Electricity

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Thermal Energy Storage Systems for Peak Electricity ( thermal-energy-storage-systems-peak-electricity )

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27 References 1. C. W. Forsberg, “Sustainability by Combining Nuclear, Fossil, and Renewable Energy Sources,” Progress in Nuclear Energy, 51, 192-200 (2009) 2. C. W. Forsberg, “Use of High-Temperature Heat in Refineries, Underground Refining, and Bio-Refineries for Liquid-Fuels Production,” HTR2008-58226, 4th International Topical Meeting on High-Temperature Reactor Technology, American Society of Mechanical Engineers; September 28-October 1, 2008;Washington D.C. 3. C. W. Forsberg, “Economics of Meeting Peak Electricity Demand Using Hydrogen and Oxygen from Base-Load Nuclear or Off- Peak Electricity,” Nuclear Technology, 166, 18-26 April 2009. 4. I. Oloyede and C. Forsberg, “Implications of Gigawatt-Year Electricity Storage Systems on Future Baseload Nuclear Electricity Demand”, Paper 10117, Proc. International Congress on Advanced Nuclear Power Plants, San Diego, 15-17 June 2010. 5. Y. H. Lee, C. Forsberg, M. Driscoll, and B. Sapiie, “Options for Nuclear-Geothermal Gigawatt-Year Peak Electricity Storage Systems,” Paper 10212, Proc. International Congress on Advanced Nuclear Power Plants, San Diego, 15-17 June 2010. 6. G. Haratyk and C. Forsberg, “Integrating Nuclear and Renewables for Hydrogen and Electricity Production”, Paper 1082, Second International Meeting on the Safety and Technology of Nuclear Hydrogen Production, Control, and Management, Embedded American Nuclear Society Topical, San Diego, 15-17 June 2010. 7. C. Forsberg, “Alternative Nuclear Energy Futures: Peak Electricity, Liquid Fuels, and Hydrogen”, Paper 10076, Second International Meeting on the Safety and Technology of Nuclear Hydrogen Production, Control, and Management, Embedded American Nuclear Society Topical, San Diego, 15-17 June 2010. 8. I. Oloyede, C. W. Forsberg, M. J. Driscoll, “Gigawatt-Year Electricity Storage Requirements for Nuclear and Renewable Power Production,” American Nuclear Society Winter Meeting, Las Vegas, Nevada (Nov 2010). 9. C. W. Forsberg, “An Air-Brayton Nuclear Hydrogen Combined-Cycle Peak- and Base-Load Electric Plant,” CD-ROM, IMECE2007-43907, 2007 ASME International Mechanical Engineering Congress and Exposition, Seattle, Washington, November 11-15, 2007, American Society of Mechanical Engineers, 2007 . 10. C. W. Forsberg and James C. Conklin, Hydrogen-or-Fossil-Combustion Nuclear Combined-Cycle Systems for Base- and Peak-Load Electricity Production, ORNL-6980, Oak Ridge National Laboratory, Oak Ridge, Tennessee, September 2007. 11. J. C. Conklin and C. W. Forsberg, “Base-Load and Peak Electricity from a Combined Nuclear Heat and Fossil Combined-Cycle Power Plant,” Proc. Global 2007: Advanced Nuclear Fuel Cycles and Systems, Boise, Idaho, September 9-13, 2007, American Nuclear Society, La Grange Park, Illinois. 12. A. Slocum, J. Buongiorno, C. W. Forsberg, T. McKrell, A. Mitsos, J. Nave, D. Codd, A. Ghobeity, C. J. Noone, S. Passerini, F. Rojas, “Concentrated Solar Power on Demand,” (Submitted to Solar Energy). 13. C. W. Forsberg, R. Krentz-Wee, Y. H. Lee, and I. O. Oloyede, Nuclear Energy for Simultaneous Low-Carbon Heavy-Oil Recovery and Gigawatt-Year Heat Storage for Peak Electricity Production, MIT-NES-TR-011, Massachusetts Institute of Technology (December 2010).

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