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首页> 外文期刊>Journal of Fusion Energy >Tendency of MHD Forces to Create Localized, Collimated Plasma-filled Flux Tubes & Ion Orbit Instability in a Flux Tube
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Tendency of MHD Forces to Create Localized, Collimated Plasma-filled Flux Tubes & Ion Orbit Instability in a Flux Tube

机译:MHD势必会创建局域化,准直的等离子填充通量管,并在通量管中产生离子轨道不稳定性

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摘要

Electrostatic helicity injection involves the injection of new azimuthal magnetic flux to link the existing axial flux of an open magnetic field. Since magnetic flux is frozen into plasma, this injection of new flux requires the injection of new plasma as well. This associated plasma injection means that helicity injection involves an increase of the density in the flux tube comprised by the initial open magnetic field lines. The injection of plasma and its embedded magnetic flux results in a collimation of the open flux tube when the embedded magnetic flux becomes compressed due to flow stagnation. Plasma injection occurs in the form of jets originating from biased electrodes having plasma sources. These jets can originate from both cathodes and anodes. An ion orbit instability may occur for cathode-originating jets. In cathode-originating jets the ions move opposite to the direction of the conventional current and so experience an anti-pinch force which can be strong enough to overwhelm the usual magnetic force responsible for cyclotron orbit motion.
机译:静电螺旋注入涉及注入新的方位磁通量,以链接开放磁场的现有轴向磁通量。由于磁通量被冻结到等离子体中,因此这种新通量的注入也需要注入新的等离子体。这种相关联的等离子体注入意味着螺旋注入涉及由初始开放磁场线构成的通量管中密度的增加。当埋入的磁通量由于流动停滞而被压缩时,等离子体及其埋入的磁通量的注入导致开口的通量管准直。等离子体注入以源自具有等离子体源的偏置电极的射流的形式发生。这些射流可源自阴极和阳极。源自阴极的射流可能发生离子轨道不稳定性。在起源于阴极的射流中,离子以与常规电流相反的方向移动,因此会经受反捏力,该捏力可能足以抵消造成回旋加速器轨道运动的常规磁力。

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