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首页> 外文期刊>Contributions to Plasma Physics >Investigation of dust shielding effect of intrinsic ergodic magnetic field line structures in the peripheral plasma in the large helical device
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Investigation of dust shielding effect of intrinsic ergodic magnetic field line structures in the peripheral plasma in the large helical device

机译:大螺旋装置中外周等离子体中固有晶体磁场线结构的灰尘屏蔽效果研究

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摘要

>Recent long pulse discharges in the large helical device (LHD) have been interrupted by radiation collapse induced by the emission of dust from the surface of the vacuum vessel and the divertor region. The dust shielding effect by intrinsic ergodic magnetic field line structures (ergodic layer) formed around the main plasma confinement region is investigated using a three‐dimensional peripheral plasma fluid code (EMC3‐EIRENE) coupled with a dust transport simulation code (DUSTT). Simulations performed in three different magnetic configurations with narrow, medium, and wide ergodic layers show that the wide ergodic layer is not always effective in shielding the main plasma from the dust emission. Optimum operational regimes for controlling the influence of the dust emission on the sustainment of plasma discharges are found by investigating the impurity ion content in the peripheral plasma for various plasma heating powers and plasma densities in the three magnetic configurations.
机译:

近期大螺旋设备(LHD)的长脉冲放电通过从真空容器的表面发射灰尘引起的辐射塌陷而被中断偏转器区域。使用与灰尘传输模拟代码(Dustt)连接的三维外围等离子体流体码(EMC3-烯烯)来研究围绕主等离子体限制区域形成的固有晶体磁场线结构(ergodic层)的灰尘屏蔽效果。在具有窄,介质和宽的晶体层的三种不同磁性配置中进行的模拟表明,宽的晶体层并不总是有效地屏蔽来自粉尘发射的主等离子体。用于控制粉尘排放对血浆排出的持续性能影响的最佳操作制度是通过在三种磁性配置中针对各种等离子体加热功率和等离子体密度研究外周等离子体中的杂质离子含量来发现。

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