首页> 外文期刊>The Astrophysical journal >A STABLE, ACCURATE METHODOLOGY FOR HIGH MACH NUMBER, STRONG MAGNETIC FIELD MHD TURBULENCE WITH ADAPTIVE MESH REFINEMENT: RESOLUTION AND REFINEMENT STUDIES
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A STABLE, ACCURATE METHODOLOGY FOR HIGH MACH NUMBER, STRONG MAGNETIC FIELD MHD TURBULENCE WITH ADAPTIVE MESH REFINEMENT: RESOLUTION AND REFINEMENT STUDIES

机译:具有自适应网格细化的高马赫数强磁场MHD湍流的稳定,精确方法:解析和细化研究

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Performing a stable, long-duration simulation of driven MHD turbulence with a high thermal Mach number and a strong initial magnetic field is a challenge to high-order Godunov ideal MHD schemes because of the difficulty in guaranteeing positivity of the density and pressure. We have implemented a robust combination of reconstruction schemes, Riemann solvers, limiters, and constrained transport electromotive force averaging schemes that can meet this challenge, and using this strategy, we have developed a new adaptive mesh refinement (AMR) MHD module of the ORION2 code. We investigate the effects of AMR on several statistical properties of a turbulent ideal MHD system with a thermal Mach number of 10 and a plasma β0 of 0.1 as initial conditions; our code is shown to be stable for simulations with higher Mach numbers () and smaller plasma beta (β0 = 0.0067) as well. Our results show that the quality of the turbulence simulation is generally related to the volume-averaged refinement. Our AMR simulations show that the turbulent dissipation coefficient for supersonic MHD turbulence is about 0.5, in agreement with unigrid simulations.
机译:由于很难保证密度和压力的正性,对高阶马杜诺夫理想MHD方案提出了对具有高热马赫数和强初始磁场的MHD湍流进行稳定,长时间的仿真的挑战。我们已经实现了可以应对这一挑战的重构方案,Riemann解算器,限制器和约束运输电动势平均方案的强大组合,并且使用该策略,我们开发了ORION2代码的新的自适应网格细化(AMR)MHD模块。我们研究了AMR对湍流理想MHD系统的几个统计特性的影响,该系统的初始热马赫数为10,血浆β0为0.1。我们的代码对于较高的马赫数()和较小的血浆β(β0= 0.0067)的仿真也很稳定。我们的结果表明,湍流模拟的质量通常与体积平均细化有关。我们的AMR模拟表明,超音速MHD湍流的湍流耗散系数约为0.5,这与非刚性模拟相符。

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