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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Recuperator Total volume (m3)* Width (m) Active Length (m) Channel type Semicircular channel diameter (mm) Plate thickness (mm) Channel pitch (mm) Hot side pressure drop (kPa) Cold side pressure drop (kPa) Hot side pressure drop (%)** Cold side pressure drop (%)** Total power (MWth) Power density (MWth/m3)** Total specific volume (m3/MWe)** High temperature 52.95 0.6 1.75 straight 2 1.5 2.4 85.95 27.38 1.101 0.154 985.51 18.61 0.215 Low temperature 46.05 0.6 2.05 straight 2 1.5 2.4 109.35 11.35 1.403 0.057 398.80 8.66 0.187 Table 10.6 Recuperator design summary * of core block excluding the header ** based on recuperator hot or cold side inlet pressure Table 10.7 Precooler design Total volume (m3)* Module width (m) Module length (m) Total volume (m3) Channel type Semicircular channel diameter (mm) Plate thickness (mm) Channel pitch (mm) Gas side pressure drop (kPa) Gas side pressure drop (%)* Water side pumping power (MW) Total power (MWth) Power density (MWth/m3)** Total specific volume (m3/MWe)** * of core block excluding the header ** based on precooler inlet pressure 10.3.3 Turbomachinery 21.00 0.6 1.10 35.50 straight 2 1.5 2.4 12.27 0.159 1.61 328.38 15.64 0.085 As aforementioned certain aspects of the turbomachinery design were not completely finished for the reference design. Therefore the results obtained for the cycle with compressor inlet temperature of 42oC is presented here to give some prospective of the dimensions and efficiencies that are achievable. The details of the turbomachinery 234

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