Computational aspects of astrophysical MHD and turbulence

A. Brandenburg
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引用次数: 42

Abstract

The advantages of high-order finite difference scheme for astrophysical MHD and turbulence simulations are highlighted. A number of one-dimensional test cases are presented ranging from various shock tests to Parker-type wind solutions. Applications to magnetized accretion discs and their associated outflows are discussed. Particular emphasis is placed on the possibility of dynamo action in three-dimensional turbulent convection and shear flows, which is relevant to stars and astrophysical discs. The generation of large scale fields is discussed in terms of an inverse magnetic cascade and the consequences imposed by magnetic helicity conservation are reviewed with particular emphasis on the issue of alpha-quenching.
天体物理MHD和湍流的计算方面
强调了高阶有限差分格式在天体物理MHD和湍流模拟中的优势。介绍了从各种冲击试验到帕克式风力解决方案的一系列一维测试用例。讨论了在磁化吸积盘及其相关外流中的应用。特别强调在三维湍流对流和剪切流中发电机作用的可能性,这与恒星和天体物理盘有关。从反磁级联的角度讨论了大规模磁场的产生,并回顾了磁螺旋度守恒所带来的后果,特别强调了α猝灭问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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