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Impurity transport in Alcator C-Mod in the presence of poloidal density variation induced by ion cyclotron resonance heating

A Mollén, I Pusztai, M L Reinke, Ye O Kazakov, N T Howard, E A Belli, T Fülöp, The Alcator C-Mod Team2014年Plasma Physics and Controlled FusionIF 2.2出版社

Impurity particle transport in an ion cyclotron resonance heated Alcator C-Mod discharge is studied with local gyrokinetic simulations and a theoretical model including the effect of poloidal asymmetries and elongation. In spite of the strong minority temperature anisotropy in the deep core region, the poloidal asymmetries are found to have a negligible effect on the turbulent impurity transport due to low magnetic shear in this region, in agreement with the experimental observations. According to the theoretical model, in outer core regions poloidal asymmetries may contribute to the reduction of the impurity peaking, but uncertainties in atomic physics processes prevent quantitative comparison with experiments.

日本語訳

不純物粒子輸送が、イオンサイクロトロン共鳴加熱されたAlcator C-Mod放電において、ポロイダル非対称性と伸長度の効果を含む局所ジャイロ運動論的シミュレーションと理論モデルを用いて研究された。深部コア領域における強い温度非対称性にもかかわらず、ポロイダル非対称性は、この領域における低磁気シアのために、乱流不純物輸送に対して無視できる程度の影響しか及ぼさないことが見出され、これは実験観測と一致する。理論モデルによれば、外側コア領域ではポロイダル非対称性が不純物ペーキングの低減に寄与する可能性があるが、原子物理過程における不確実性のため、実験との定量的比較は不可能である。

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alcator-c-mod高精度(タイトル一致)

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ImpurityIon cyclotron heatingAlcatorCyclotron resonanceC-ModImpurity transportIon cyclotron resonance
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