1997•Plasma Physics and Controlled FusionRequires access

Stabilization of toroidal modes by finite- effects

B. Jhowry, H. Nordman, J. Weiland

Open publisher page 4 citations

Abstract

The effects of finite on the toroidal ion temperature gradient mode has been investigated by a multi-pole fluid model. Experimental data from the Joint European Torus (JET) have been used to ensure the relevance to experiments. The mode is strongly stabilized by finite- effects well below the MHD ballooning mode stability threshold.

About this research paper

What this paper is about

The effects of finite on the toroidal ion temperature gradient mode has been investigated by a multi-pole fluid model. Experimental data from the Joint European Torus (JET) have been used to ensure the relevance to experiments. The mode is strongly stabilized by finite- effects well below the MHD ballooning mode stability threshold.

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Available abstract

The effects of finite on the toroidal ion temperature gradient mode has been investigated by a multi-pole fluid model. Experimental data from the Joint European Torus (JET) have been used to ensure the relevance to experiments. The mode is strongly stabilized by finite- effects well below the MHD ballooning mode stability threshold.

Key concepts: Ballooning, Joint European Torus, Toroid, Physics, Mode (computer interface), Magnetohydrodynamics, Jet (fluid), Torus

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