Conceptual Design of HP-STMCs Space Reactor Power System for 110 kWe
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[1] Lee S. Mason,et al. 100-kWe lunar/Mars surface power utilizing the SP-100 reactor with dynamic conversion , 1992 .
[2] Mohamed S. El-Genk,et al. A Methodology for the Neutronics Design of Space Nuclear Reactors , 2004 .
[3] David I. Poston,et al. Design and analysis of the SAFE-400 space fission reactor , 2002 .
[4] Mohamed S. El-Genk,et al. Conceptual Design of a 100‐kWe Space Nuclear Reactor Power System with High‐Power AMTEC , 2003 .
[5] Steven J. Zinkle,et al. Overview of materials technologies for space nuclear power and propulsion , 2002 .
[6] Lanny G. Thieme,et al. Stirling technology development at NASA GRC , 2002 .
[7] J. Tournier,et al. Mechanically Alloyed‐Oxide Dispersion Strengthened Steels for Use in Space Nuclear Power Systems , 2004 .
[8] M.S. El-Genk,et al. Energy conversion technologies for advanced radioisotope and nuclear reactor power systems for future planetary exploration , 2002, Twenty-First International Conference on Thermoelectrics, 2002. Proceedings ICT '02..
[9] R. L. Graves,et al. Analysis of alkali liquid metal Rankine space power systems , 1985 .
[10] Jeffrey G. Schreiber. Power characteristics of a Stirling radioisotope power system over the life of the mission , 2001 .
[11] H. W. Hoffman,et al. Liquid metal heat transfer issues , 1984 .
[12] A. Borshchevsky,et al. Development of a high efficiency thermoelectric unicouple for power generation applications , 1999, Eighteenth International Conference on Thermoelectrics. Proceedings, ICT'99 (Cat. No.99TH8407).
[13] Mohamed S. El-Genk,et al. Design Optimization of High‐Power, Liquid Anode AMTEC , 2003 .