ASDEX 升级版和 JET 实验中憩息器脱离开始和重新附着时间尺度的简化模型预测比较

S. Henderson, Matthias Bernert, D. Brida, M. Cavedon, Pierre David, Ralph Dux, O. Février, Philippe Jacquet, A. E. Järvinen, Arne Kallenbach, J. Karhunen, K. Kirov, M. Komm, Morten Lennholm, B. Lomanowski, Chris Lowry, R. McDermott, Andy Meigs, Holger Reimerdes, Hongjuan Sun, Beth Thomas
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摘要

在先前对 ASDEX 升级(AUG)实验(Henderson 等人,Nucl. Fusion 63 086024 2023)分析的基础上,本研究比较了 JET 实验中岔道脱离开始和重新附着时间尺度的简单分析公式预测。脱离开始时间主要与憩室中性压力、杂质浓度、指向目标的功率、机器尺寸和积分垂直功率衰减长度有关。以 Ne 和 Ar 的种子混合物为重点的 JET 实验与脱离开始的预测相一致。杂质之间的辐射效率与模型预测结果十分吻合,这与 AUG 观察结果形成了鲜明对比,后者表明 Ar 的效率更高,而 Ne 的效率更低。在完全分离的分流器条件下,测量了注入的中性束功率突然增加和杂质气流分别被切断后,外靶前方中性体积再电离所需的时间。在 JET 上,中性物质的再电离发生在大约 1 秒钟内,这与根据 AUG 数据得出的简单模型预测结果一致。虽然 ASDEX 升级的结果并不新颖,但将其与 JET 的结果进行比较可以加深理解,增强使用简单模型预测未来反应堆情况的信心。
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Comparison of reduced model predictions for divertor detachment onset and reattachment timescales in ASDEX Upgrade and JET experiments
Building on prior analysis of ASDEX Upgrade (AUG) experiments (Henderson et al. Nucl. Fusion 63 086024 2023), this study compares simple analytical formula predictions for divertor detachment onset and reattachment timescales in JET experiments. Detachment onset primarily scales with divertor neutral pressure, impurity concentration, power directed to the targets, machine size, and integral perpendicular power decay length. JET experiments, focusing on seeding mixtures of Ne and Ar, align with the detachment onset predictions. Radiation efficiencies among the impurities show good agreement with the model predictions, contrasting with AUG observations which suggested higher efficiency for Ar and lower efficiency for Ne. The time taken to re-ionise the neutral volume in front of the outer target in fully detached divertor conditions was measured following both abrupt increases in injected neutral beam power and, separately, cutting of the impurity gas flow. Reionisation of the neutrals occurs within approximately 1 second on JET, which aligns with the simple model prediction derived from AUG data. While the ASDEX Upgrade results are not new, their comparison with the JET results enhances understanding, reinforcing confidence in using simple models to predict future reactor scenarios.
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