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Study of a Closed Divertor Configuration for the Three-Dimensionally Complicated Magnetic Structure in the LHD Plasma Periphery

机译:LHD等离子体外围中三维复杂磁结构的封闭分流器配置研究

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摘要

The distribution of strike points in a closed divertor configuration with additional baffle plates installed in the toroidal ends of closed divertor components near lower/upper ports is calculated by tracing magnetic field lines from the last closed flux surface in various magnetic configurations (radial position of the magnetic axis, Rax = 3.50 ? 3.90 m). The calculation shows that the ratio of the number of strike points on additional plates is maximum for Rax = 3.60 m, showing that the plates are effective in this magnetic configuration. Neutral particle transport is investigated using a fully three-dimensional code EIRENE with one-dimensional plasma fluid analysis of divertor legs, where the plasma parameter profiles on the legs are obtained by an iterative calculation including interaction processes between the plasma and neutral particles. The plates raise the pressure of molecular hydrogen locally near the baffle plates to more than 0.2 Pa, which is enough for efficient particle control using vacuum pumping systems installed near the plates. The simulation proposes one possible candidate of optimized closed divertor configuration for the three-dimensionally complicated magnetic structure in the LHD plasma periphery.
机译:通过跟踪来自最后一个封闭通量表面的各种磁性配置中的磁力线,可以计算出封闭的偏滤器结构中的触击点的分布,附加的挡板安装在下部/上部端口附近的封闭式偏滤器组件的环形端中。磁轴,Rax = 3.50-3.90 m)。计算表明,对于Rax = 3.60 m,附加板上的触击点数之比最大,表明这些板在这种磁性配置下有效。使用全三维代码EIRENE和偏滤器支腿的一维等离子体流体分析来研究中性粒子的运输,其中通过迭代计算(包括等离子体与中性粒子之间的相互作用过程)获得支腿上的血浆参数分布。这些板将挡板附近的局部氢分子压力提高到超过0.2 Pa,这足以使用安装在板附近的真空泵系统进行有效的颗粒控制。该模拟为LHD等离子体外围中的三维复杂磁性结构提出了一种优化的闭合偏滤器配置的可能候选方案。

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