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Modeling collisional processes in plasmas using discontinuous numerical methods.

机译:使用不连续数值方法对等离子体中的碰撞过程进行建模。

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摘要

Fluid-based plasma models are typically applied to parameter regimes where a local thermal equilibrium is assumed. The applicability of this regime is valid for many plasmas, however, it is limited to plasma dynamics dominated by collisional effects. This study attempts to extend the validity of the collisional fluid regime using an anisotropic 13-moment fluid model derived from the Pearson type-IV probability distribution. The model explicitly evolves the heat flux hyperbolically alongside the density, momentum, and energy in order to capture dynamics usually restricted to costly kinetic models. Each particle species is modeled individually and collectively coupled through electromagnetic and collision operators. To remove electromagnetic divergence errors inherent to numerical representations of Maxwell's equations, both hyperbolic and parabolic cleaning methods are presented. The plasma models are implemented using high-order finite volume and discontinuous Galerkin numerical methods designed for unstructured meshes. The unstructured code framework, numerical methods, and plasma models were developed in the University of Washington's WARPXM code for use on heterogeneous accelerated clusters.
机译:基于流体的等离子体模型通常应用于假设局部热平衡的参数方案。此方案的适用性对许多等离子体有效,但是,它仅限于以碰撞效应为主的等离子体动力学。这项研究试图使用从Pearson IV型概率分布中得出的各向异性的13矩流体模型来扩展碰撞流体状态的有效性。该模型显式地使热通量与密度,动量和能量一起呈双曲线形变化,以便捕获通常限于昂贵的动力学模型的动力学。每个粒子种类都通过电磁和碰撞算子分别建模并共同耦合。为了消除麦克斯韦方程组数值表示所固有的电磁发散误差,提出了双曲线和抛物线清洗方法。等离子体模型使用高阶有限体积和为非结构化网格设计的不连续Galerkin数值方法实现。华盛顿大学的WARPXM代码开发了非结构化代码框架,数值方法和等离子模型,用于异构加速集群。

著录项

  • 作者

    Miller, Sean.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Plasma physics.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 219 p.
  • 总页数 219
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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