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Particle and parallel momentum balance equations with inclusion of drifts, for modelling strong- to weakly-collisional edge plasmas

机译:包含漂移的粒子和平行动量平衡方程,用于建模从强碰撞到弱碰撞的边缘等离子体

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摘要

A system of plasma particle and parallel momentum balance equations is derived appropriate for understanding the role of drifts in the edge and for edge modelling, particularly in the scrape-off layer (SOL) of tokamaks, stellarators and other magnetic confinement devices. The formulation allows for strong collisionality-but also covers the case of weak collisionality and strong drifts, a combination often encountered in the SOL. The most important terms are identified by assessing the magnitude of characteristic velocities and fluxes for the plasma edge region. Explanations of the physical nature of each term are provided. A number of terms that are sometimes not included in edge modelling has been included in the parallel momentum balance equation after detailed analysis of the parallel component of the gradient of the total pressure-stress tensor. This includes terms related to curvature and divergence of the field lines, as well as further contributions coming from viscous forces related mainly to the ion centrifugal drift. All these terms are shown to be roughly of the same order of magnitude as convective momentum fluxes related to drifts and therefore should be included in the momentum balance equation.
机译:推导出了一个等离子粒子和平行动量平衡方程组,该系统适合于理解漂移在边缘中的作用以及用于边缘建模,特别是在托卡马克,恒星器和其他磁性约束装置的刮除层(SOL)中。该公式考虑到了强烈的碰撞性,但也涵盖了碰撞力弱和漂移大的情况,这是SOL中经常遇到的组合。通过评估等离子体边缘区域的特征速度和通量的大小,可以确定最重要的术语。提供了每个术语的物理性质的解释。在对总压力应力张量的梯度的平行分量进行详细分析之后,平行动量平衡方程中已经包含了一些有时不包含在边缘建模中的术语。这包括与场线的曲率和发散有关的术语,以及主要与离子离心漂移有关的来自粘性力的其他贡献。所有这些项都显示为与与漂移相关的对流动量通量大致相同的数量级,因此应将其包括在动量平衡方程中。

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