首页> 外文会议>19th IAEA Fusion Energy Conference Oct 14-19, 2002 Lyon, France >Studies of ELM Heat Load, SOL Flow and Carbon Erosion from Existing Tokamak Experiments, and Projections for ITER
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Studies of ELM Heat Load, SOL Flow and Carbon Erosion from Existing Tokamak Experiments, and Projections for ITER

机译:现有托卡马克实验对ELM热负荷,SOL流量和碳侵蚀的研究以及ITER的预测

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Three important physics issues for the ITER divertor design and operation are summarized based on the experimental and numerical work from multi-machine database (JET, JT-60U, ASDEX Upgrade, DIII-D, Alcator C-Mod and TEXTOR). (ⅰ) The energy load associated with Type-Ⅰ ELMs is of great concern for the lifetime of the ITER divertor target. In order to understand the physics base of the scaling models, the ELM heat and particle transport from the edge pedestal to the divertor is investigated. Convective transport during ELMs plays an important role in heat transport to the divertor. (ⅱ) Determination of the SOL flow pattern and the driving mechanism has progressed experimentally and numerically. Influences of the drift effects on the SOL and divertor plasma transport were discussed, (ⅲ) Carbon erosion and redeposition are of great importance in particular for tritium retention via codeposition. Characteristics of chemical yield at two different deposited carbon surfaces, i.e. erosion- and redeposition-dominated areas, have been studied. Progress in the understanding of the chemical erosion is reviewed.
机译:在多机数据库(JET,JT-60U,ASDEX升级,DIII-D,Alcator C-Mod和TEXTOR)的实验和数值工作的基础上,总结了ITER偏滤器设计和操作的三个重要物理问题。 (ⅰ)与I型ELM相关的能量负荷是ITER分流器靶材使用寿命的重要考虑因素。为了了解缩放模型的物理基础,研究了ELM热量和粒子从边缘基座到偏滤器的传输。 ELMs中的对流传输在热量转移到分流器中起着重要作用。 (ⅱ)SOL流动模式和驱动机理的确定已经在实验和数值上取得了进展。讨论了漂移效应对SOL和偏滤器等离子体传输的影响。(ⅲ)碳腐蚀和再沉积对于通过code沉积保留retention特别重要。已经研究了在两个不同的沉积碳表面上的化学产率的特征,即侵蚀和再沉积占主导的区域。综述了对化学腐蚀的认识。

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