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Автор A B Mikhailovskii
Автор B N Kuvshinov
Автор V P Lakhin
Автор S V Novakovskii
Автор S E Sharapov
Автор A I Smolyakov
Автор A P Churikov
Дата выпуска 1989-10-01
dc.description For pt.I see ibid., vol.31, p.1741-58 (1989). Concrete types of viscous-resistive ballooning MHD modes in a Tokamak are investigated. It is shown that the averaged ballooning equation of incompressible disturbances, derived in Part I, has an exact solution. The general dispersion equation of incompressible weakly ballooning modes is deduced, and different limits of this equation are considered. It is shown that viscosity results in stabilization of resistive-interchange instability in a high pressure plasma and decreases the ideal ballooning modes' increment.
Формат application.pdf
Издатель Institute of Physics Publishing
Название One-fluid approach to the theory of viscous-resistive ballooning modes in a Tokamak. II. Stability analysis
Тип paper
DOI 10.1088/0741-3335/31/11/003
Electronic ISSN 1361-6587
Print ISSN 0741-3335
Журнал Plasma Physics and Controlled Fusion
Том 31
Первая страница 1759
Последняя страница 1784
Аффилиация A B Mikhailovskii; I.V. Kurchatov Inst. of Atomic Energy, Moscow, USSR
Аффилиация B N Kuvshinov; I.V. Kurchatov Inst. of Atomic Energy, Moscow, USSR
Аффилиация V P Lakhin; I.V. Kurchatov Inst. of Atomic Energy, Moscow, USSR
Аффилиация S V Novakovskii; I.V. Kurchatov Inst. of Atomic Energy, Moscow, USSR
Аффилиация S E Sharapov; I.V. Kurchatov Inst. of Atomic Energy, Moscow, USSR
Аффилиация A I Smolyakov; I.V. Kurchatov Inst. of Atomic Energy, Moscow, USSR
Аффилиация A P Churikov; I.V. Kurchatov Inst. of Atomic Energy, Moscow, USSR
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