Performance projections of alternative AMTEC systems and devices
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M. L. Underwood | R. M. Williams | Barbara Jeffries-Nakamura | M. Ryan | R. Williams | B. Jeffries-Nakamura | D. O'Connor | M. Underwood | D. O'Connor | M. Amy Ryan
[1] R. Ewell,et al. Experimental and Systems Studies of the Alkali Metal Thermoelectric Converter for Aerospace Power , 1983 .
[2] C. P. Bankston,et al. Kinetics and transport at AMTEC electrodes. II - Temperature dependence of the interfacial impedance of Na(g)/porous Mo/Na-Beta-double prime alumina , 1990 .
[3] C. Bankston,et al. AMTEC recirculating test cell component testing and operation , 1989, Proceedings of the 24th Intersociety Energy Conversion Engineering Conference.
[4] C. P. Bankston,et al. Kinetics and transport at AMTEC electrodes. I - The interfacial impedance model. [alkali metal thermoelectric converters] , 1990 .
[5] M. Ryan,et al. Thermal Characterization Of An Amtec Recirculating Test Cell , 1990, Proceedings of the 25th Intersociety Energy Conversion Engineering Conference.
[6] T. Cole,et al. Thermoelectric Energy Conversion with Solid Electrolytes , 1983, Science.
[7] Neill Weber,et al. A thermoelectric device based on beta-alumina solid electrolyte , 1974 .
[8] Robert K. Sievers,et al. AMTEC system performance studies using the detailed electrode kinetic and transport model , 1992 .
[9] A. Thakoor,et al. The Role of Oxygen in Porous Molybdenum Electrodes for the Alkali Metal Thermoelectric Converter , 1986 .
[10] T. Cole,et al. High efficiency thermoelectric conversion with beta″-alumina electrolytes, the sodium heat engine , 1981 .
[11] C. P. Bankston,et al. Performance and impedance studies of thin, porous molybdenum and tungsten electrodes for the alkali metal thermoelectric converter , 1988 .
[12] C. P. Bankston,et al. High Power Density Performance of WPt and WRh Electrodes in the Alkali Metal Thermoelectric Converter , 1989 .