Statistical Analyses of Turbulent Particle and Momentum Fluxes in a Cylindrical Magnetized Plasma
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概要
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A nonlinear simulation of resistive drift wave turbulence in a cylindrical plasma is carried out. Long time evolution of turbulence with formation of a zonal flow is obtained for more than 1000 times of the typical drift wave period, which is sufficient for statistical analyses. Dynamical particle and momentum balance for the formation of the mean reveals that the radial turbulent fluxes are dominant contributors for the evolution of fluctuations. The particle flux is found to precede the momentum flux for 0.4 times of the typical drift wave period with large temporal variance. The analyses of the time series data of 3-D fields give the understanding of the dynamical structural formation mechanism.
- 社団法人 プラズマ・核融合学会の論文
著者
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Nagashima Yoshihiko
Research Institute For Applied Mechanics Kyushu University
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Inagaki Shigeru
Research Institute For Applied Mechanics Kyushu University
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Itoh Sanae-i.
Research Instittue For Applied Mechanics Kyushu University
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SASAKI Makoto
Research Institute for Applied Mechanics, Kyushu University, Fukuoka 816-8580, Japan
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KASUYA Naohiro
Research Institute for Applied Mechanics, Kyushu University
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ITOH Kimitaka
Itoh Research Center for Plasma Turbulence, Kyushu University
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YAGI Masatoshi
Itoh Research Center for Plasma Turbulence, Kyushu University
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