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Radially global δf computation of neoclassical phenomena in a tokamak pedestal

Matt Landreman, Felix I Parra, Peter J Catto, Darin R Ernst, Istvan Pusztai2014年Plasma Physics and Controlled FusionIF 2.2出版社

Conventional radially-local neoclassical calculations become inadequate if the radial gradient scale lengths of the H-mode pedestal become as small as the poloidal ion gyroradius. Here, we describe a radially global δf continuum code that generalizes neoclassical calculations to allow for stronger gradients. As with conventional neoclassical calculations, the formulation is time-independent and requires only the solution of a single sparse linear system. We demonstrate precise agreement with an asymptotic analytic solution of the radially global kinetic equation in the appropriate limits of aspect ratio and collisionality. This agreement depends crucially on accurate treatment of finite orbit width effects.

日本語訳

ここでは、径方向グローバルなδf連続体コードを用いた新古典輸送の計算手法について述べる。この手法は、ポロイダルジャイロ半径が小さく、かつ動的場の振幅が小さいという条件下で有効である。従来の新古典計算と同様に、本定式化は時間非依存であり、単一のスパース線形システムの求解のみを必要とする。我々は、この径方向グローバルな運動論方程式の漸近解析解と、アスペクト比および衝突頻度の適切な極限において精密に一致することを示す。この一致は、有限軌道幅効果の正確な取り扱いに決定的に依存する。

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