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- W2023992571 abstract "A conceptual design of static converters for small, co-generation modular nuclear power plants is developed and analyzed. Each converter is comprised of an alkali metal thermal-to-electric conversion (AMTEC) top cycle and thermoelectric (TE) bottom cycle cooled by natural convection of air. In addition to electricity production at a net efficiency in the low thirties, the small nuclear power plants with AMTEC/TE converters could provide co-generation heat for space heating, seawater desalination and/or high temperature process heat or steam. For the potassium AMTEC/TE converter, the conversion efficiency is about 1% point higher, the hot side temperature >100 K lower and the co-generation heat is slightly lower than for the sodium AMTEC/TE converter when operated at the same anode vapor pressure. On the other hand, when operated at the same hot side temperature, the efficiency of electricity production of power plants with K-AMTEC/TE converters could be ∼25% higher, while the co-generation thermal energy for space heating is ∼25% lower than with Na-AMTEC/TE converters. The present analysis showed that K- and Na-AMTEC/TE converters could be sized to produce up to 64 and 81 kWe each at hot side temperatures of 1030 and 1150 K, respectively, while achieving >90% total utilization of the nuclear reactor’s fission energy for the plant." @default.
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- W2023992571 date "2004-03-01" @default.
- W2023992571 modified "2023-09-23" @default.
- W2023992571 title "AMTEC/TE static converters for high energy utilization, small nuclear power plants" @default.
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- W2023992571 doi "https://doi.org/10.1016/s0196-8904(03)00159-6" @default.
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