Shell Current and Vertical Field Due to It in a Tokamak Model Shell
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概要
- 論文の詳細を見る
The distribution of the image current in a model shell containing a plasma simulator has been measured. The shell current increases as the simulator moves outwards, and as the frequency of the simulator current increases. The deviation from a dipolar distribution of the shell current becomes more pronounced as the simulator moves inwards. When the frequency is raised to make the skin depth of the shell smaller than the thickness of the shell, the strength of the shell current becomes essentially independent of the frequency. The measured vertical field due to the shell current agrees with the vertical field calculated with the measured shell current.
- 社団法人応用物理学会の論文
- 1977-08-05
著者
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FUJISAWA Noboru
Japan Atomic Energy Research Institute
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Sometani Taro
Department Of Electrical Engineering Faculty Of Engineeing Shizuoka University
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HASEBE Kenroku
Department of Electrical Engineering, Faculty of Engineering, Shizuoka University
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Hasebe Kenroku
Department Of Electrical Engineering Faculty Of Engineering Shizuoka University
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- A Method of Realizing the Minimum-B Field
- Poloidal Magnetic Field of an Iron-Cored Tokamak
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- Evaluation of Error Poloidal Field in an Iron-Cored Tokamak
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- Arrangements of Current Carrying Conductors for the Minimum-B Field in the Average Sense
- Toroidal Inhomogeneity of the Vertical Field in a Tokamak Apparatus
- Analysis of the Magnetic Field Penetrating through a Cylindrical Resistive Shell of a Tokamak
- Eddy Current Measurement on a Noncircular Model Shell
- Vertical position control of INTOR elongated plasma.