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Radial electric field and ion parallel flow in the quasi-symmetric and Mirror configurations of HSX

S T A Kumar, T J Dobbins, J N Talmadge, R S Wilcox, D T Anderson2018年Plasma Physics and Controlled FusionIF 2.2出版社

The radial electric field and the ion mean parallel flow are obtained in the helically symmetric experiment stellarator from toroidal flow measurements of C+6 ion at two locations on a flux surface, using the Pfirsch–Schlüter effect. Results from the standard quasi-helically symmetric magnetic configuration are compared with those from the Mirror configuration where the quasi-symmetry is deliberately degraded using auxiliary coils. For similar injected power, the quasi-symmetric configuration is observed to have significantly lower flows while the experimental observations from the Mirror geometry are in better agreement with neoclassical calculations. Indications are that the radial electric field near the core of the quasi-symmetric configuration may be governed by non-neoclassical processes.

日本語訳

ヘリカル対称型ステラレータにおいて、動径電場とイオンの平均平行流は、磁気面上の2箇所におけるC+6イオンのトロイダル流測定から、プフィルシュ・シュリュータ効果を用いて得られた。標準的な準ヘリカル対称磁場配位の結果は、補助コイルを用いて準対称性を意図的に劣化させたミラー配位の結果と比較された。同程度の入射パワーにおいて、準対称配位では流れが有意に低いことが観測され、一方ミラー配位における実験観測は新古典計算とより良く一致した。これらの結果は、準対称配位のコア近傍における動径電場が、非新古典過程によって支配されている可能性を示唆している。

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Radial electric field
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