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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Effect of recombination and ionization on the analysis of Mach and single probes in un-magnetized and magnetized plasmas of MAP-II and DiPS devices
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Effect of recombination and ionization on the analysis of Mach and single probes in un-magnetized and magnetized plasmas of MAP-II and DiPS devices

机译:重组和电离对MAP-II和DiPS装置的未磁化和磁化等离子体中的Mach和单探针分析的影响

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摘要

For the analysis of atomic processes such as recombination and ionization in the divertor plasmas, we have developed a fast-scanning multiple probe system, which is composed of single, Mach and emissive probes along with Thomson scattering system at the material and plasma (MAP)-II divertor simulator with low magnetic field (about 200 G). Measured spatial variations of electron density, electron temperature, flow velocity and plasma potential will be given in comparison with those by Thomson scattering method. To analyze the data, a new fluid model on the ion collection to a probing object in un-magnetized plasmas is developed including electron-ion recombination, molecular activated recombination and ionization. This system is applied to another divertor simulator, divertor plasma simulator (DiPS), with higher magnetic field (up to 2 kG). (c) 2007 Published by Elsevier B.V.
机译:为了分析偏滤器等离子体中的重组和电离等原子过程,我们开发了一种快速扫描的多探针系统,该系统由单个,马赫和发射探针以及材料和等离子体(MAP)上的汤姆森散射系统组成具有低磁场(约200 G)的-II偏滤器模拟器。与Thomson散射法相比,将给出电子密度,电子温度,流速和等离子体电势的测量空间变化。为了分析数据,开发了一种在未磁化等离子体中将离子收集到探测对象的新流体模型,其中包括电子-离子重组,分子活化重组和电离。该系统被应用到另一个具有更高磁场强度(高达2 kG)的偏转器模拟器,即偏转器等离子体模拟器(DiPS)。 (c)2007年由Elsevier B.V.

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