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SOLPS simulation of TCV divertor leg length studies

机译:TCV偏移腿部长度研究的SOLPS模拟

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This contribution uses TCV experiments with varying divertor configurations to investigate the particle- and heat cross-field transport within the scrape-off layer, which greatly determines the peak heat flux on the plasma-facing components. The proximity of expected peak heat fluxes to the material limits for ITER raises the necessity of obtaining a quantitative understanding of the mechanisms that determine the heat flux profiles on the divertor plates. Target heat flux profiles are often described by a truncated exponential profile with a decay length λ convoluted with a Gaussian of width S, which are interpreted as broadening due to diffusive transport upstream and in the divertor regions, respectively [1]. It is shown that an increase of the poloidal divertor leg length L_(div) (~factor 3) leads to an unexpected increase of λ, while having little effect on S [2]. The aim of this study is to reproduce the experimental findings quantitatively using the SOLPS code package.
机译:该贡献利用TCV实验具有不同的转向器配置,以研究刮削层内的粒子和热跨场传输,这极大地确定了等离子体构件上的峰值热通量。预期峰值热通量对浸渍材料的材料限制的接近提高了对确定转移板上的热通量轮廓的机构的定量理解的必要性。目标热通量轮廓通常由截短的指数轮廓描述,其中具有宽度S卷曲的衰减长度λ,其分别被解释为由于漫射的上游和倾斜器区域而被解释为扩展[1]。结果表明,球形偏移腿长度L_(div)(〜因子3)的增加导致λ的意外增加,同时对s [2]几乎没有效果。本研究的目的是使用SOLPS代码包定量地再现实验结果。

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