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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Simulation study of material mixing process on tungsten surfaces at elevated temperatures due to boundary plasma exposure and its influence on plasma wall interactions
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Simulation study of material mixing process on tungsten surfaces at elevated temperatures due to boundary plasma exposure and its influence on plasma wall interactions

机译:边界等离子体暴露在高温下钨表面材料混合过程及其对等离子体壁相互作用的影响的模拟研究

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摘要

Using a dynamic plasma-surface interaction code EDDY, phenomena associated with material mixing, which result from the simultaneous use of W and C as plasma-facing materials, have been simulated. A comparison of the simulation results with the growth of W-C mixed contamination layers at a W surface that was measured in TEXTOR-94 shows good agreement. The agreement shows that this growth is due to thermal diffusion of the deposited C impurity into the W surface, depending on the surface temperature. Also, C+ penetration from the W-C mixed contamination layers into the plasma has been simulated along with chemical erosion including CD4 transport in the plasma. The simulation results have been compared with CII light emission distributions measured in front of a W-C twin test limiter exposed to TEXTOR-94 plasmas. These comparisons show that the contribution of chemical erosion to the C release is suppressed due to the W-C mixed contamination layers. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 17]
机译:使用动态等离子体-表面相互作用代码EDDY,模拟了与材料混合相关的现象,这种现象是由于同时使用W和C作为面向等离子体的材料而产生的。将模拟结果与在TEXTOR-94中测得的W表面W-C混合污染层的生长进行比较,可以得出很好的一致性。协议表明,这种增长是由于沉积的C杂质根据表面温度向W表面的热扩散所致。而且,已经模拟了从W-C混合污染层到等离子体的C +渗透以及化学侵蚀,包括等离子体中CD4的运输。将模拟结果与在暴露于TEXTOR-94等离子体的W-C双测试限幅器前面测得的CII发光分布进行了比较。这些比较表明,由于W-C混合污染层的存在,化学腐蚀对C释放的贡献得到了抑制。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:17]

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