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Effects of finite gradient B drift on collisional boundary layer analysis for neoclassical toroidal plasma viscosity in tokamaks

K.C. Shaing, JaeChun Seol, Y.W. Sun, M.S. Chu, S.A. Sabbagh2010年被引用 14Nuclear FusionIF 3出版社

The effects of finite gradient B drift are included in the collisional boundary layer analysis to improve the accuracy of the neoclassical toroidal plasma viscosity in tokamaks that have error fields or magnetohydrodynamic activities present. Depending on the sign of the electric charge of the species and that of the radial electric field, the effects of finite gradient B drift can either reduce, if the E × B drift is in the same direction of the gradient B drift, or enhance, if these two drifts are in the opposite direction, the magnitude of the neoclassical toroidal plasma viscosity. Here, E is the electric field and B is the magnetic field. However, because the gradient B drift depends on the effective pitch angle, the net effects have to be properly weighted by integrating over the particle energy.

日本語訳

有限勾配Bドリフトの効果は、誤差磁場または磁気流体力学活動が存在するトカマクにおける新古典トロイダルプラズマ粘性の精度を向上させるために、衝突境界層解析に組み込まれる。種の電荷符号と動径電場の符号に応じて、有限勾配Bドリフトの効果は、E×Bドリフトが勾配Bドリフトと同方向の場合には新古典トロイダルプラズマ粘性の大きさを減少させ、これらの2つのドリフトが逆方向の場合には増大させることができる。ここで、Eは電場、Bは磁場である。しかしながら、勾配Bドリフトは有効ピッチ角に依存するため、正味の効果は粒子エネルギーにわたって積分することにより適切に重み付けされなければならない。

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