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Monte Carlo method and High Performance Computing for solving Fokker-Planck equation of minority plasma particles

机译:蒙特卡罗方法和高性能计算求解少数等离子体颗粒的Fokker-Planck方程

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This paper explains how to obtain the distribution function of minority ions in tokamak plasmas using the Monte Carlo method. Since the emphasis is on energetic ions, the guiding-center transformation is outlined, including also the transformation of the collision operator. Even within the guiding-center formalism, the fast particle simulations can still be very CPU intensive and, therefore, we introduce the reader also to the world of high-performance computing. The paper is concluded with a few examples where the presented method has been applied.
机译:本文介绍了如何使用蒙特卡洛方法获得托卡马克等离子体中少数离子的分布函数。由于重点是高能离子,因此概述了引导中心变换,其中还包括碰撞算符的变换。即使在指导中心的形式主义内,快速粒子模拟仍然会占用大量CPU,因此,我们还将向读者介绍高性能计算领域。本文以一些应用本文提出的方法的例子作为结束。

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