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Neoclassical impurity flux in presence of turbulent generated poloidal asymmetries and pressure anisotropy

P Donnel, X Garbet, Y Sarazin, V Grandgirard, N Bouzat, E Caschera, G Dif-Pradalier, P Ghendrih, C Gillot, G Latu2019年Plasma Physics and Controlled FusionIF 2.2出版社

Poloidal asymmetries of impurities are commonly observed experimentally. Density asymmetry is already known to impact significantly the neoclassical prediction of impurity fluxes. In this article, the effect of impurity pressure asymmetry and anisotropy on the neoclassical flux of impurity is derived analytically. This prediction is compared with simulations performed with the gyrokinetic code GYSELA, featuring both turbulent and neoclassical transports. A fair agreement is found between the analytical prediction and the result of the simulation. On the special cases which are considered, the effects of impurity pressure asymmetry and anisotropy are shown to play a prominent role in the modification of the neoclassical impurity transport.

日本語訳

不純物のポロイダル非対称性は実験的に一般的に観測される。密度非対称性が不純物フラックスの新古典論的予測に有意な影響を与えることは既に知られている。本論文では、不純物圧力非対称性および異方性が不純物の新古典論的フラックスに及ぼす影響を解析的に導出する。この予測は、新古典輸送と乱流輸送の両方を特徴とするジャイロ運動論コードGYSELAを用いたシミュレーションと比較される。解析的予測とシミュレーション結果の間には良好な一致が見られる。検討された特殊な場合において、不純物圧力非対称性および異方性の効果は、新古典論的不純物輸送の修正において顕著な役割を果たすことが示される。

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