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Simulation Analysis of the Design of a Vacuum Pumping System for the Closed Helical Divertor in the Large Helical Device

机译:大型螺旋装置中封闭式螺旋分流器的真空泵系统设计的仿真分析

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摘要

A promising candidate of a vacuum pumping system for the closed helical divertor in the large helical device is proposed using a three-dimensional neutral particle transport simulation code (EIRENE) and a finite element based multi-physics analysis software (ANSYS). It shows that heat load on a gas/liquid He cooled panel by thermal conduction due to high energy neutral hydrogen atoms is dominant over that by radiation from divertor plates heated by the LHD peripheral plasma. It proves that optimization of the configuration of the vacuum pumping system can significantly reduce the heat load on the panel without serious degradation of the pumping efficiency.
机译:使用三维中性粒子传输模拟代码(EIRENE)和基于有限元的多物理场分析软件(ANSYS),提出了用于大型螺旋装置中的闭合螺旋形偏滤器的真空泵系统的有希望的候选者。结果表明,由于高能中性氢原子的热传导,气/液He冷却板上的热负荷比LHD外围等离子体加热的偏滤板辐射产生的热负荷占优势。事实证明,优化真空抽气系统的配置可以显着减少面板上的热负荷,而不会严重降低抽气效率。

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