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Advanced Nuclear Power Technology Program A Supercritical Carbon Dioxide Cycle for Next Generation Nuclear Reactors

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Advanced Nuclear Power Technology Program A Supercritical Carbon Dioxide Cycle for Next Generation Nuclear Reactors ( advanced-nuclear-power-technology-program-supercritical-carb )

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Table 1.1 Table 7.1 Table 8.1 Table 8.2 Table 8.3 Table 8.4 Table 8.5 Table 8.6 Table 8.7 Table 8.8 Table 8.9 Table 8.10 Table 8.11 Table 8.12 Table 9.1 Table 9.2 Table 9.3 Table 9.4 Table 9.5 Table 10.1 Table 10.2 Table 10.3 Table 10.4 Table 10.5 Table 10.6 Table 10.7 Table 10.8 Table 12.1 Table 12.2 Table 13.1 Table 13.2 Table A.1 Table A.2 Table A.3 List of Tables Critical conditions for different fluids 3 Primary loop parameters 159 Costs of HTGR reactor with steam cycle 184 Costs of HTGR reactor with helium Brayton direct cycle 185 Capital cost differences: superheated steam cycle minus helium Brayton cycle 186 Summary of heat exchanger costs (Stainless steel case) 189 Summary of heat exchanger costs (Stainless steel + Titanium) case 189 Summary of the turbine costs 192 Account 246 adjustments 193 Account 263 adjustments 194 Costs of HTGR reactor with supercritical CO2 cycle 195 Cost difference of the supercritical CO2 cycle compared to the steam cycle 196 Fractional costs of the different supercritical CO2 cycle designs 197 Fractional costs of the supercritical CO2 cycle 199 PCHE design characteristics – www.heatric.com 204 Comparison of straight and wavy channel s 212 Main compressor parameters 219 Recompressing compressor parameters 219 Turbine parameters 221 Operating conditions of the selected designs 227 Basic design state points (conservative turbomachinery efficiencies) 228 Advanced design state points (conservative turbomachinery efficiencies) 229 High performance design state points (conservative turbomachinery efficiencies) 229 Overall heat balance for the reference design 231 Recuperator design summary 234 Precooler design 234 Turbomachinery characteristics 235 Supercritical recompression cycle vs. helium Brayton cycles 254 Summary of multiple re-heated and inter-cooled helium Brayton cycle design [from Peterson, 2003] 259 State points of the selected designs 279 Thermal and Net Efficiencies for Selected Designs 279 MHGTR-Steam Cycle, [from GCRA, 1993] 305 MHGTR-Helium Direct Brayton Cycle, [from GCRA, 1993] 306 MHGTR--Helium Direct Brayton Cycle – Reactor Plant Equipment Costs, [from GCRA, 1993] 307 xviii

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