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DESIGN OF A CLOSED HELICAL DIVERTOR IN LHD AND THE PROSPECT FOR HELICAL FUSION REACTORS

机译:左旋闭式螺旋分流器的设计及螺旋融合反应器的前景

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摘要

A new closed helical divertor configuration for efficient particle control and reduction of the heat load on the divertor plates is proposed. The closed divertor configuration practically utilizes an ergodic layer and magnetic field line configuration on divertor legs in helical systems. For optimization of the design of the closed divertor, the distribution of the strike points is calculated in various magnetic configurations in the Large Helical Device (LHD). It suggests that the installation of the closed divertor components in the inboard side of the torus under an inward shift configuration (R_(ax)=3.60m) is the best choice for achieving the above two purposes. This divertor configuration does not interfere with plasma heating and diagnostic systems installed in outer ports. The prospect of the closed divertor configuration to a helical fusion reactor is investigated using a three-dimensional neutral particle transport simulation code with a one-dimensional plasma fluid calculation on the divertor legs. The investigation shows efficient particle pumping from the inboard side and reduction of the heat load due to the combined effect of the optimized closed divertor geometry, ergodized divertor legs, and low electron temperature in the ergodic layer. It indicates a promising closed divertor configuration for helical fusion reactors.
机译:提出了一种新的闭合螺旋形偏滤器配置,用于有效控制颗粒并减少偏滤器板上的热负荷。闭合的偏滤器配置实际上在螺旋系统的偏滤器支腿上利用了遍历层和磁场线配置。为了优化闭合偏滤器的设计,在大型螺旋装置(LHD)中以各种磁性配置计算了触击点的分布。这表明在向内移位配置(R_(ax)= 3.60m)下,将闭合的偏滤器组件安装在圆环的内侧是实现上述两个目的的最佳选择。该分流器配置不会干扰外部端口中安装的等离子加热和诊断系统。使用三维中性粒子输运模拟代码,并在分流器支腿上进行一维等离子体流体计算,研究了螺旋聚变反应堆封闭分流器构型的前景。研究表明,由于优化的封闭式偏滤器几何形状,已遍历的偏滤器支腿以及遍历层中的电子温度较低,这些因素共同作用,从内侧进行了有效的颗粒抽吸,并降低了热负荷。它表明了螺旋聚变反应堆有希望的封闭偏滤器配置。

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  • 来源
    《Fusion Science and Technology》 |2009年第2期|1001-1008|共8页
  • 作者单位

    National Institute for Fusion Science: Toki, Gifu, Japan,509-5292;

    National Institute for Fusion Science: Toki, Gifu, Japan,509-5292;

    National Institute for Fusion Science: Toki, Gifu, Japan,509-5292;

    National Institute for Fusion Science: Toki, Gifu, Japan,509-5292;

    National Institute for Fusion Science: Toki, Gifu, Japan,509-5292;

    National Institute for Fusion Science: Toki, Gifu, Japan,509-5292;

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