论文标题

欧盟替代分流模拟中功率排气的参数缩放

Parametric scaling of power exhaust in EU-DEMO alternative divertor simulations

论文作者

Järvinen, A. E., Aho-Mantila, L., Lunt, T., Subba, F., Rubino, G., Xiang, L.

论文摘要

对eu-demo的替代分离配置(ADC)SOLPS- solps-tir-imer仿真数据库中功率排气的参数缩放的研究进行了研究,并将其与基于Lengyel模型的预测进行了比较。 Lengyel模型过度预测,相对于SOLPS-ersiter模拟,LFS分离脱离的必要氩气浓度约为5-10倍。因此,尽管Lengyel模型预测,欧盟 - 德莫(Eu-Demo)中具有加速移动热载荷的等离子体将超过可耐受性的上游杂质浓度,但在可接受的操作空间内有几种SOLPS-固定溶液。 Solps仪模拟表明,与标准的Lengyel模型所假设不同,除了氩辐射(例如跨场传输)以外的其他耗散耗散机制,这些机制将氩辐射的作用降低2至3。此外,Lengyel模型仅通过平行的辐射效率而导致辐射效率,从而使辐射效率更高,从而导致辐射的效率,从而导致辐射的效率,从而导致辐射效率,从而导致辐射的范围,从而使A辐射的范围呈现出来,从而使A辐射的范围越来越高降低导热率。结果,对于给定的杂质浓度抑制了辐射体积和总杂质辐射。但是,SOLPS-仪的模拟表明,其他机制(例如跨场运输)可以在辐射前部内与平行热传导竞争并增加辐射体积。由于这些发现,强烈建议使用标准的lengyel模型,用于分析分析分析移动条件和配置(例如欧盟)的配置的标准模型。

Investigations of parametric scaling of power exhaust in the alternative divertor configuration (ADC) SOLPS-ITER simulation database of the EU-DEMO are conducted and compared to predictions based on the Lengyel model. The Lengyel model overpredicts the necessary argon concentrations for LFS divertor detachment by about a factor of 5-10 relative to the SOLPS-ITER simulations. Therefore, while the Lengyel model predicts that plasmas with accetable divertor heat loads in EU-DEMO would exceed the tolerable upstream impurity concentrations by a large margin, there are several SOLPS-ITER solutions within an acceptable operational space. The SOLPS-ITER simulations indicate that, unlike assumed by the standard Lengyel model, there are significant heat dissipation mechanisms other than argon radiation, such as cross-field transport, that reduce the role of argon radiation by a factor of 2 to 3. Furthermore, the Lengyel model assumes that the radiation front is powered by parallel heat conduction only, which tends to lead to a narrow radiation front as the radiative efficiency increases strongly with reducing thermal conductivity. As a result, the radiative volume and total impurity radiation are suppressed for a given impurity concentration. However, the SOLPS-ITER simulations indicate that other mechanisms, such as cross-field transport, can compete with parallel heat conduction within the radiative front and increase the radiative volume. Due to these findings, usage of the standard Lengyel model for analyzing scaling between divertor conditions and configurations for devices such as EU-DEMO is strongly discouraged.

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