Adiabatic Efficiency of Supersonic Faraday MHD Generator
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概要
- 論文の詳細を見る
Objectives of the present experimental study are to investigate adiabatic efficiencies of a supersonic Faraday MHD(magnetohydrodynamics)generator with cesium-seeded argon and at the same time to achieve a high enthalpy extraction. MHD power generation experiments were carried out with a shock tube facility. The MHD channel has 35 pairs of electrodes and the width between its insulator walls is expanded along the flow direction. Total pressures were measured at the exit of the MHD channel and total pressure losses were evaluated. Furthermore, the adiabatic efficiency was measured for the first time in the present experiments in which an enthalpy extraction ratio of about 10% was achievd. Comparison of these results with those obtained using a disk-type generator indicates that a Faraday generator has higher adiabatic efficiencies at the same enthalpy extraction ratio. The influence of voltage drops on loading parameters and electrical efficiencies is also discussed.
- 一般社団法人日本機械学会の論文
- 1997-02-15
著者
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Yoshida Akihiro
Department of Cardiovascular Medicine, Kobe University Graduate School of Medicine
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KABASHIMA Shigeharu
Department of Applied Physics, Tokyo Institute of Technology
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Kabashima S
Tokyo Inst. Technol. Yokohama Jpn
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Kabashima Shigeharu
Tokyo Institute Of Technology Department Of Energy Sciences
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Kabashima Shigeharu
Department Of Applied Physics Tokyo Institute Of Technology
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Kabashima Shigeharu
Department Of Energy Sciences Tokyo Institute Of Technology
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Yoshiie Ryo
Department Of Human And Information Systems Faculty Of Engineering Gifu University
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Yoshiie Ryo
Department Of Energy Sciences Tokyo Institute Of Technology
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Shioda S
Department Of Energy Sciences Tokyo Institute Of Technology
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Shioda Susumu
Department Of Energy Sciences Tokyo Institute Of Technology
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Yoshida A
Hokuriku Univ. Ishikawa Jpn
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YAMASAKI Hiroyuki
Research Laboratory for Nuclear Reactors, Tokyo Institute of Technology
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Yoshida Akihiro
Department Of Biology Faculty Of Science Kyushu University
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Yamasaki Hiroyuki
Research Laboratory For Nuclear Reactors Tokyo Institute Of Technology
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Yoshida Akihiro
Department Of Applied Physics Faculty Of Science Fukuoka University
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Kabashima Shigeharu
Department of Energy Sciences, Tokyo Institute of Technology
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