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Modelling of local carbon deposition on a rough test limiter exposed to the edge plasma of TEXTOR

机译:在暴露于TEXTOR边缘等离子体的粗糙测试限制器上的局部碳沉积建模

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A Monte-Carlo code called SURO was developed to study the influence of surface roughness on the impurity deposition characteristics in fusion experiments. SURO uses the test particle approach to describe the impact of background plasma and the deposition of impurity particles on a sinusoidal surface. The local impact angle and dynamic change of surface roughness as well as surface concentrations of different species due to erosion and deposition are taken into account. Coupled with the three-dimensional Monte-Carlo code ERO, SURO was used to study the impact of surface roughness on ~(13)C deposition in ~(13)CH_4 injection experiments in TEXTOR. The simulations showed that the amount of net deposited ~(13)C species increased with surface roughness. Parameter studies with varying ~(12)C and ~(13)C fluxes were performed to gain insights into impurity deposition characteristics on the rough surface. Calculations of the exposure time needed for surface smoothing for TEXTOR and ITER were also carried out for different scenarios.
机译:为了研究表面粗糙度对聚变实验中杂质沉积特性的影响,开发了一种名为SURO的蒙特卡罗代码。 SURO使用测试粒子方法来描述背景等离子体的影响以及正弦表面上杂质粒子的沉积。考虑到局部冲击角和表面粗糙度的动态变化,以及由于腐蚀和沉积而导致的不同物种的表面浓度。结合三维蒙特卡罗代码ERO,在TEXTOR的〜(13)CH_4注入实验中,使用SURO来研究表面粗糙度对〜(13)C沉积的影响。模拟表明,净沉积〜(13)C物种的数量随表面粗糙度的增加而增加。进行了变化的〜(12)C和〜(13)C通量的参数研究,以了解粗糙表面上的杂质沉积特征。还针对不同场景对TEXTOR和ITER表面平滑所需的曝光时间进行了计算。

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