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Recent progress in the quantitative validation of JOREK simulations of ELMs in JET

S.J.P. Pamela, G.T.A. Huijsmans, T. Eich, S. Saarelma, I. Lupelli, C.F. Maggi, C. Giroud, I.T. Chapman, S.F. Smith, L. Frassinetti2017年被引用 28Nuclear FusionIF 3出版社

Future devices like JT-60SA, ITER and DEMO require quantitative predictions of pedestal density and temperature levels, as well as inter-ELM and ELM divertor heat fluxes, in order to improve global confinement capabilities while preventing divertor erosion/melting in the planning of future experiments. Such predictions can be obtained from dedicated pedestal models like EPED, and from non-linear MHD codes like JOREK, for which systematic validation against current experiments is necessary. In this paper, we show progress in the quantitative validation of the JOREK code using JET simulations. Results analyse the impact of diamagnetic terms on the dynamics and size of the ELMs, and evidence is provided that the onset of type-I ELMs is not governed by linear MHD stability alone, but that a nonlinear threshold could be responsible for large MHD events at the plasma edge.

日本語訳

将来の装置であるJT-60SA、ITER、DEMOでは、ペデスタル密度・温度レベルの定量的予測と、ELM間およびELM中のダイバータ熱負荷の予測が求められている。これは、全体閉じ込め性能の向上と、将来実験の計画におけるダイバータの損耗・溶融の防止を両立するために必要である。このような予測は、EPEDのような専用のペデスタルモデルや、JOREKのような非線形MHDコードによって得ることができ、これらの手法には現行実験との体系的な検証が不可欠である。本論文では、JOREKコードをJETシミュレーションに適用した定量的検証の進展を示す。特に、 diamagnetic(反磁性)項がELMのダイナミクスとサイズに与える影響を解析した結果、type-I ELMの発生は線形MHD安定性のみでは決定されず、プラズマ端部における大規模MHD事象の発生には非線形の閾値が関与し得るという証拠が得られたことを報告する。

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jet高精度(タイトル一致)iter低精度(概要文一致)jt-60sa低精度(概要文一致)

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JETEdge localized mode
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