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EXPERIMENTS WITH CONTROLLABLE APPLICATION OF RADIAL ELECTRIC FIELDS IN GDT CENTRAL CELL

机译:径向电场在GDT中央细胞中的可控应用实验

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摘要

Influence of the radial electric field on the MHD-stability was studied in the GDT using a set of biased end plates and limiters that provided a possibility to control radial profile of the plasma potential. It was shown that biasing of the limiters or peripheral end plate section to a potential of 250 - 300 V leads to considerable increase of the energy confinement time due to reduction of the electric field in the plasma volume. MHD-stability of the plasma was observed in this regime with the remote anchors not energized. The possible stabilization mechanism associated with radial electric field is discussed.
机译:在GDT中使用一组偏置的端板和限制器研究了径向电场对MHD稳定性的影响,这提供了控制等离子径向分布的可能性。结果表明,由于等离子体体积中电场的减小,限制器或外围端板部分向250-300 V的电势偏置会导致能量限制时间的显着增加。在这种情况下,远程锚不通电,观察到血浆的MHD稳定性。讨论了与径向电场有关的可能的稳定机制。

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