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Kinetic approach to microscopic-macroscopic coupling in space and laboratory plasmas

机译:在空间和实验室等离子体中进行微观-宏观耦合的动力学方法

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摘要

Kinetic plasma simulation typically requires to handle a multiplicity of space and time scales. The implicit moment particle in cell (PIC) method provides a possible route to address the presence of multiple scales effectively. Here, a new implementation of the implicit moment method is described. The present paper has two goals. First, the most modern implementation of the implicit moment method is described. While many of the algorithms involved have been developed in the past, the present paper reports for the first time how the implicit moment method is currently implemented and what specific algorithms have been found to work best. Second, we present the CELESTE3D code, a fully electromagnetic and fully kinetic PIC code, based on the implicit moment method. The code has been in use for a number of years but no previous complete description of its implementation has been provided. The present work fills this gap and introduces a number of new methods not previously presented: a new implementation of the Maxwell solver and a new particle mover based on a Newton-Krylov nonlinear solver for the discretized Newton's equations. A number of benchmarks of CELESTE3D are presented to shown the typical application and to investigate the improvements introduced by the new solver and the new mover. (c) 2006 American Institute of Physics.
机译:动力学等离子体模拟通常需要处理多个空间和时间尺度。单元中的隐式矩粒子(PIC)方法提供了有效解决多个尺度存在的可能途径。在此,描述了隐式矩方法的新实现。本论文有两个目标。首先,描述了隐式矩方法的最新实现。尽管过去已经开发了许多算法,但本文还是首次报道了目前如何实现隐式矩方法以及发现哪种算法最有效。其次,我们基于隐式矩方法介绍CELESTE3D代码,这是一种完全电磁且完全动力学的PIC代码。该代码已经使用了很多年,但是以前没有提供其实现的完整描述。本工作填补了这一空白,并介绍了许多以前未曾提出过的新方法:麦克斯韦求解器的新实现以及基于牛顿-克里洛夫非线性求解器的离散牛顿方程的新粒子移动器。提出了许多CELESTE3D基准测试,以显示典型应用程序并研究新求解器和新移动器引入的改进。 (c)2006年美国物理研究所。

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