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Novel SOLPS-ITER simulations of X-point target and snowflake divertors

C Cowley, A Q Kuang, D Moulton, J D Lore, J Canik, M Umansky, M Wigram, S Ballinger, B Lipschultz, X Bonnin2023年Plasma Physics and Controlled FusionIF 2.2出版社

The design and understanding of alternative divertor configurations may be crucial for achieving acceptable steady-state heat and particle material loads for magnetic confinement fusion reactors. Multiple X-point alternative divertor geometries such as snowflakes and X-point targets have great potential in reducing power loads, but have not yet been simulated widely in codes with kinetic neutrals. This paper discusses recent changes made to the SOLPS-ITER code to allow for the simulation of X-point target and low-field side snowflake divertor geometries. Snowflake simulations using this method are presented, in addition to the first SOLPS-ITER simulation of the X-point target. Analysis of these results show reasonable consistency with the simple modelling and theoretical predictions, supporting the validity of the methodology implemented.

日本語訳

多様なダイバータ配位の設計と理解は、磁場閉じ込め核融合炉において許容可能な定常状態の熱・粒子材料負荷を達成するために極めて重要となり得る。スノーフレークやXポイントターゲットなどの多重Xポイント代替ダイバータ配位は、電力負荷低減において大きな可能性を有するが、運動論的中性粒子を考慮したコードではまだ広くシミュレーションされていない。本論文では、Xポイントターゲットおよび低磁場側スノーフレークダイバータ配位のシミュレーションを可能にするためにSOLPS-ITERコードに加えられた最近の変更について論じる。この手法を用いたスノーフレークシミュレーションに加え、Xポイントターゲットの初のSOLPS-ITERシミュレーション結果を示す。これらの結果の解析は、単純なモデリングおよび理論的予測と合理的な一致を示し、実装された方法論の妥当性を裏付けるものである。

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