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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >2D edge plasma modeling extended up to the main chamber
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2D edge plasma modeling extended up to the main chamber

机译:二维边缘等离子体建模扩展到主腔

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摘要

Far SOL plasma flow, and hence main chamber recycling and plasma surface interaction, are today still only very poorly described by current 2D fluid edge codes, such as B2, UEDGE or EDGE2D, due to a common technical limitation. We have extended the B2 plasma fluid solver in the current ITER version of B2-EIRENE (SOLPS4.3) to allow plasma solutions to be obtained up to the "real vessel wall", at least on the basis of ad hoc far SOL transport models. We apply here the kinetic Monte Carlo Code EIRENE on such plasma solutions to study effects of this model refinement on main chamber fluxes and sputtering, for an ITER configuration. We show that main chamber sputtering may be significantly modified both due to thermalization of CX neutrals in the far SOL and poloidally highly asymmetric plasma wall contact, as compared to hitherto applied teleportation of particle fluxes across this domain.
机译:由于常见的技术限制,目前,目前的2D流体边缘代码(例如B2,UEDGE或EDGE2D)仍然仅能非常差地描述远SOL等离子体流以及由此导致的主腔室再循环和等离子体表面相互作用。我们已经在当前的ITER版本B2-EIRENE(SOLPS4.3)中扩展了B2等离子流体求解器,从而至少在临时的SOL传输模型的基础上,可以获取直到“实际容器壁”为止的等离子溶液。 。我们在这里将动力学蒙特卡罗代码EIRENE应用于此类等离子体解决方案,以研究此模型改进对ITER配置对主室通量和溅射的影响。我们显示,与迄今为止在整个域中应用的粒子通量相比,远腔SOL中的CX中性物的热化和极高的非对称等离子体壁接触都可能对主腔室溅射进行了重大修改。

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