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Ion flows in the scrape-off layer with biased limiter : implications for Tore Supra toroidal pumped limiter design

机译:离子在带偏置限制器的刮除层中流动:对Tore Supra环形泵浦限制器设计的影响

摘要

A simple analytic fluid model based on particle and momentum conservation describes the response of the scrape-off layer to an applied radial electric field. The model explains why the variation of plenum pressure during limiter biasing in TEXTOR shows the opposite behaviour as divertor biasing in Tokamak de Varennes: the mechanical baffles that define the throats of the pump limiter are aligned along the magnetic field, thus preventing collection of the induced perpendicular flux when the drift is directed towards the scoop. Rather, the optimal pumping is expected when the drift is directed away from the scoop due to the increase of the parallel flux needed to satisfy the Bohm-Chodura criterion. Qualitative agreement is obtained with measurements of the parallel flow near the limiter throat, and with measurements of the plenum pressure during negative biasing for both directions of toroidal magnetic field. The results, extrapolated to Tore Supra, predict that the actual design with throats should provide close to optimal pumping with minor modification of the natural radial electric field, but greater performance could be obtained with negative biasing if a toroidally symmetric neutralizer geometry were adopted.
机译:一个基于粒子和动量守恒的简单分析流体模型描述了刮除层对施加的径向电场的响应。该模型解释了为什么在TEXTOR中限制器偏置期间的通风压力变化表现出与Tokamak de Varennes中的偏向器偏置相反的行为:定义泵限制器喉部的机械挡板沿磁场排列,从而防止收集感应气漂移指向勺子时的垂直通量。而是,由于满足Bohm-Chodura准则所需的平行通量的增加,当将漂移从勺子移开时,可以预期获得最佳抽运。通过测量限幅器喉部附近的平行流,以及在环形磁场的两个方向的负偏压期间测量气室压力,可以获得定性一致性。根据外推到Tore Supra的结果,预测实际使用喉部的设计应在对自然径向电场进行较小修改的情况下提供接近最佳的泵浦效果,但是如果采用环形对称中和器几何形状,则在负偏置的情况下可以获得更好的性能。

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