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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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temperature recuperators and the pre-cooler. At first the optimum volume fraction of the high temperature recuperator is not always higher than the optimum volume fraction of the low temperature recuperator. The trends of the optimum volume fractions are opposite for the high and low temperature recuperators. The optimum volume fraction of the high temperature recuperator first increases (except for the 550oC case) and after reaching its maximum value near 20 MPa it starts to decrease. The trend is opposite for the optimum volume fraction of the low temperature recuperator. Depending on the operating temperature at some compressor outlet pressure the optimum volume fraction of the low temperature recuperator becomes higher than that of the high temperature recuperator. This behavior is retained for the rest of the investigated pressure range. 0.6 0.5 0.4 0.3 0.2 0.1 0 550oC 650oC 750oC 850oC 15 17.5 20 22.5 25 27.5 30 Compressor Outlet Pressure (MPa) Figure 6.31 Low temperature recuperator optimum volume fraction for recompression cycle The optimum volume fraction of the pre-cooler at first significantly increases with the compressor outlet pressure. Its volume goes up by about 50% when increasing the compressor outlet pressure from 15 to 20 MPa. Above 20 MPa, the optimum volume fraction of the pre-cooler increases only slightly or remains constant. Unlike in the case 141 LT Recuperator Optimum Volume Fraction (-)

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