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A class of TVD type combined numerical scheme for MHD equations with a survey about numerical methods in solar wind simulations

机译:一类用于MHD方程的TVD型组合数值格式以及有关太阳风模拟数值方法的概述

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摘要

It has been believed that three-dimensional, numerical, magnetohydrodynamic (MHD) modelling must play a crucial role in a seamless forecasting system. This system refers to space weather originating on the sun; propagation of disturbances through the solar wind and interplanetary magnetic field (IMF), and thence, transmission into the magnetosphere, ionosphere, and thermosphere. This role comes as no surprise to numerical modelers that participate in the numerical modelling of atmospheric environments as well as the meteorological conditions at Earth. Space scientists have paid great attention to operational numerical space weather prediction models. To this purpose practical progress has been made in the past years. Here first is reviewed the progress of the numerical methods in solar wind modelling. Then, based on our discussion, a new numerical scheme of total variation diminishing (TVD) type for magnetohydrodynamic equations in spherical coordinates is proposed by taking into account convergence, stability and resolution. This new MHD model is established by solving the fluid equations of MHD system with a modified Lax-Friedrichs scheme and the magnetic induction equations with MacCormack II scheme for the purpose of developing a combined scheme of quick convergence as well as of TVD property. To verify the validation of the scheme, the propagation of one-dimensional MHD fast and slow shock problem is discussed with the numerical results conforming to the existing results obtained by the piece-wise parabolic method (PPM). Finally, some conclusions are made. [References: 76]
机译:人们已经认为,三维数值磁流体动力学(MHD)建模必须在无缝预测系统中发挥关键作用。该系统是指源自太阳的太空天气。通过太阳风和行星际磁场(IMF)传播干扰,然后传播到磁层,电离层和热层。对于参与大气环境以及地球气象条件的数值建模的数值建模者来说,这一作用不足为奇。太空科学家非常重视可操作的数值太空天气预报模型。为此目的,在过去几年中已经取得了实际进展。这里首先回顾一下太阳风建模中数值方法的进展。然后,在我们的讨论的基础上,考虑了收敛性,稳定性和分辨率,提出了一种新的全球面磁流体动力学方程总变分减小(TVD)类型的数值方案。通过开发具有改进的Lax-Friedrichs方案的MHD系统的流体方程和具有MacCormack II方案的磁感应方程,从而建立快速收敛和TVD特性的组合方案,可以建立新的MHD模型。为了验证该方案的有效性,讨论了一维MHD快慢冲击问题的传播,其数值结果与通过分段抛物线法(PPM)获得的现有结果相符。最后,得出一些结论。 [参考:76]

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