首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Three-dimensional proton trajectory analyses and simulation of neutral particle transport in an ICRF heated long pulse discharge on the large helical device
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Three-dimensional proton trajectory analyses and simulation of neutral particle transport in an ICRF heated long pulse discharge on the large helical device

机译:大型螺旋装置上ICRF加热的长脉冲放电中的中性粒子传输的三维质子轨迹分析和模拟

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摘要

A three-dimensional neutral particle transport simulation code is applied to identify a source of the hydrogen outgas in a LHD long pulse discharge by ICRF heating. Radiation collapse induced by uncontrollable plasma density rise terminated the long pulse discharge. Toroidally non-uniform increases in the H, emission and divertor temperature were observed. A CCD camera detected local heating of a vertically installed divertor plate, which is consistent with the strike points of the trajectories of protons accelerated by ICRF waves. The neutral particle transport simulation with the proton trajectory analyses shows that outgas from the divertor plates heated by the protons is necessary for explaining the observed toroidal non-uniform distribution of the H, emission in the long pulse discharge. (c) 2004 Elsevier B.V. All rights reserved.
机译:应用三维中性粒子传输模拟代码来识别通过ICRF加热在LHD长脉冲放电中的氢气排放源。由不可控制的等离子体密度升高引起的辐射塌陷终止了长脉冲放电。观察到氢,发射和偏滤器温度的环面非均匀增加。 CCD摄像机检测到垂直安装的偏滤器板的局部加热,这与ICRF波加速的质子轨迹的拐点一致。通过质子轨迹分析进行的中性粒子传输模拟表明,从质子加热的分流板流出的气体对于解释长脉冲放电中H,发射的环形非均匀分布是必要的。 (c)2004 Elsevier B.V.保留所有权利。

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