从一维刮脱层模拟中得出的剥离比例

IF 2.3 2区 物理与天体物理 Q1 NUCLEAR SCIENCE & TECHNOLOGY Nuclear Materials and Energy Pub Date : 2024-12-01 DOI:10.1016/j.nme.2024.101819
Thomas Body , Thomas Eich , Adam Kuang , Tom Looby , Mike Kryjak , Ben Dudson , Matthew Reinke
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引用次数: 0

摘要

核聚变发电厂将需要分离以减轻溅射,并将分流器的热通量保持在可容忍的水平。控制这些设备上的脱离可能需要使用实时刮脱层建模来补充有限的可用诊断集。在这项工作中,我们使用可配置的Hermes-3边缘建模框架来执行随时间变化的固定分数杂质一维分离模拟。虽然目前离实时还很远,但这些模拟用于研究与时间相关的效应和控制相关建模所需的最小物理集。我们表明,这些模拟再现了预期的目标离子通量的翻转-脱离发作的典型特征。我们还对输入热流密度和杂质浓度进行了扫描,结果表明稳态结果与0D时间无关的lengye - goedheer模型预测的标度非常吻合。这使我们可以间接地与SOLPS模拟进行比较,SOLPS模拟发现了类似的缩放,但在给定的上游条件下,分离所需的杂质浓度值较低。我们利用这一结果对Hermes模拟提出了一系列改进建议,并最终展示了时间依赖性影响的模拟。
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Detachment scalings derived from 1D scrape-off-layer simulations
Fusion power plants will require detachment to mitigate sputtering and keep divertor heat fluxes at tolerable levels. Controlling detachment on these devices may require the use of real-time scrape-off-layer modeling to complement the limited set of available diagnostics. In this work, we use the configurable Hermes-3 edge modeling framework to perform time-dependent, fixed-fraction-impurity 1D detachment simulations. Although currently far from real-time, these simulations are used to investigate time-dependent effects and the minimum physics set required for control-relevant modeling. We show that these simulations reproduce the expected rollover of the target ion flux — a typical characteristic of detachment onset. We also perform scans of the input heat flux and impurity concentration and show that the steady-state results closely match the scalings predicted by the 0D time-independent Lengyel–Goedheer model. This allows us to indirectly compare to SOLPS simulations, which find a similar scaling but a lower value for the impurity concentration required for detachment for given upstream conditions. We use this result to suggest a series of improvements for the Hermes simulations, and finally show simulations demonstrating the impact of time-dependence.
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来源期刊
Nuclear Materials and Energy
Nuclear Materials and Energy Materials Science-Materials Science (miscellaneous)
CiteScore
3.70
自引率
15.40%
发文量
175
审稿时长
20 weeks
期刊介绍: The open-access journal Nuclear Materials and Energy is devoted to the growing field of research for material application in the production of nuclear energy. Nuclear Materials and Energy publishes original research articles of up to 6 pages in length.
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