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Design constraints on new vacuum components of RFX-mod2 upgrade using electrical modeling of reversed field pinch plasma

机译:使用反向场收缩等离子体的电气建模对RFX-mod2升级的新真空组件进行设计约束

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摘要

The externally applied loop voltage, required to drive current carrying magnetic configurations, such as tokamaks or reversed field pinches (RFP), can induce currents between the plasma and the surrounding conducting components, such as limiters, divertor sections, stabilizing plates or enclosing stabilizing shells with insulated electrical gaps. An appropriate modeling of this problem can quantify these currents and give constraints for the design of new devices. In this paper a methodology based on lumped element circuit is used to evaluate this problem for the case of in vessel components of the RFX-mod2, which led to a redesign of the electrical connections of plasma facing components. In the new design some parts, having applied potential in the kV range, are still exposed to the weakly ionized scrape off plasma. The process of arc formation between them and their prevention had been experimentally investigated and possible arc suppression strategies identified.
机译:驱动诸如托卡马克或反向场收缩(RFP)之类的载流磁性结构所需的外部施加的环路电压会在等离子体与周围的导电组件(如限幅器,分流器部分,稳定板或封闭的稳定壳)之间感应出电流。绝缘的电气间隙。对此问题进行适当的建模可以量化这些电流,并为新设备的设计提供约束。在本文中,基于集总元件电路的方法被用于评估RFX-mod2的容器内组件情况下的问题,这导致了面向等离子组件的电连接的重新设计。在新设计中,某些部件的施加电势在kV范围内,仍然暴露于弱电离刮除等离子体中。已经对它们之间的电弧形成过程及其预防进行了实验研究,并确定了可能的消弧策略。

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