Theoretical Consideration of Heat Flux Distribution of Arc Driven by AC Magnetic Field
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概要
- 論文の詳細を見る
A magnetically driven arc is produced by imposing an external magnetic field to a transferred arc. Its width is determined by the amplitude of its oscillatory motion. Its heat flux distribution can be controlled by the waveform of the magnetic field. Prediction of the heat flux distribution on the anode is necessary to apply the magnetically driven arc in industrial fields.This paper describes the theoretical examination of the magnetically driven arc. A one-dimensional heat source with a Gaussian distribution is assumed to predict the heat flux distribution within the amplitude. First, the heat flux variation according to the magnetic flux density was examined under a DC magnetic field. Based on that investigation, the heat flux distributions in various AC magnetic fields were considered within the oscillatory amplitude.
- 社団法人 日本鉄鋼協会の論文
- 2009-12-15
著者
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SUDO Seiichi
Department of Mechanical Engineering, Iwaki Meisei University
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SUGIMOTO Masaya
Department of Pediatrics, Asahikawa Medical College
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MATSUMOTO Naomi
Department of Biology, Faculty of Sciences, Kyushu University Graduate School
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Takeda Koichi
Department of Pathology, Wakayama Medical University
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Sudo Seiichi
Department Of Machine Intelligence And System Engineering Akita Prefectural University
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Masaya Sugimoto
Department Of Machine Intelligence And Systems Engineering Faculty Of Systems Science And Technology
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YAMAMOTO Takeo
Department of Applied Physics, Tohoku University
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Sugimoto Masaya
Department Of Machine Intelligence And System Engineering Akita Prefectural University
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TOH Takehiko
Technical Development Bureau, Nippon Steel Corporation
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Toh Takehiko
Technical Development Bureau Nippon Steel Corporation
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Takeda Koichi
Faculty Of Systems Science And Technology Akita Prefectural University
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Matsumoto Naomi
Department Of Machine Intelligence And System Engineering Akita Prefectural University
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Matsumoto Naomi
Department Of Biology Faculty Of Sciences Kyushu University Graduate School
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Takeda Koichi
Department Of Machine Intelligence And System Engineering Akita Prefectural University
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Yamamoto Takeo
Department Of Machine Intelligence And System Engineering Akita Prefectural University
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Yamamoto Takeo
Department Of Applied Physics Tohoku University
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Takeda Koichi
Department Of Electronic Engineering Tohoku University
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Takeda Koichi
Department of Biological Science and Technology, Faculty of Engineering, The University of Tokushima
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SUDO SEIICHI
Department of Chemical Engineering, University of Tokyo
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