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首页> 外文期刊>The Astrophysical Journal. Supplement Series >Data-driven Modeling of the Solar Corona by a New Three-dimensional Path-conservative Osher-Solomon MHD Model
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Data-driven Modeling of the Solar Corona by a New Three-dimensional Path-conservative Osher-Solomon MHD Model

机译:通过新的三维路径保守的Osher-Solomon MHD模型进行数据驱动的太阳能电晕建模

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摘要

A second-order path-conservative scheme with a Godunov-type finite-volume method has been implemented to advance the equations of single-fluid solar wind plasma magnetohydrodynamics (MHD) in time. This code operates on the six-component composite grid system in three-dimensional spherical coordinates with hexahedral cells of quadrilateral frustum type. The generalized Osher-Solomon Riemann solver is employed based on a numerical integration of the path-dependent dissipation matrix. For simplicity, the straight line segment path is used, and the path integral is evaluated in a fully numerical way by a high-order numerical Gauss-Legendre quadrature. Besides its very close similarity to Godunov type, the resulting scheme retains the attractive features of the original solver: it is nonlinear, free of entropy-fix, differentiable, and complete, in that each characteristic field results in a different numerical viscosity, due to the full use of the MHD eigenstructure. By using a minmod limiter for spatial oscillation control, the path-conservative scheme is realized for the generalized Lagrange multiplier and the extended generalized Lagrange multiplier formulation of solar wind MHD systems. This new model that is second order in space and time is written in the FORTRAN language with Message Passing Interface parallelization and validated in modeling the time-dependent large-scale structure of the solar corona, driven continuously by Global Oscillation Network Group data. To demonstrate the suitability of our code for the simulation of solar wind, we present selected results from 2009 October 9 to 2009 December 29 show its capability of producing a structured solar corona in agreement with solar coronal observations.
机译:已经实施了具有Godunov型有限体积法的二阶路径保守方案,以推进单流体太阳能磁流动流体动力学(MHD)的方程。该代码在三维球形坐标中使用四维球形坐标,具有四边形截头截肢型的六面体细胞。基于路径依赖性耗散基质的数值积分,采用广义OSHER-SOLOMON RIEMANN求解器。为简单起见,使用直线段路径,并且通过高阶数值高斯 - Legendre正交以完全数值方式评估路径积分。除了与Godunov型的非常密切的相似之外,所产生的方案还保留了原始求解器的吸引力:它是非线性的,没有熵 - 修复,可微分和完整,因为每个特征场导致不同的数值粘度,由于充分利用MHD特征。通过使用MinMod限制器进行空间振荡控制,实现了路径保守方案,实现了广义拉格朗日乘法器和太阳能风力MHD系统的扩展广泛拉格朗日乘法配方。这一新模型是空间和时间中的第二顺序,用消息传递接口并行化并通过全局振荡网络组数据持续驱动,以消息传递接口并行化并验证。为了展示我们对太阳能模拟的代码的适用性,我们提出了2009年10月9日至2009年12月29日的所选结果,表明其与太阳冠状动脉观察协议制作结构化太阳能电晕的能力。

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    Chinese Acad Sci Natl Space Sci Ctr State Key Lab Space Weather SIGMA Weather Grp Beijing 100190 Peoples R China;

    Chinese Acad Sci Natl Space Sci Ctr State Key Lab Space Weather SIGMA Weather Grp Beijing 100190 Peoples R China;

    Chinese Acad Sci Natl Space Sci Ctr State Key Lab Space Weather SIGMA Weather Grp Beijing 100190 Peoples R China;

    Chinese Acad Sci Natl Space Sci Ctr State Key Lab Space Weather SIGMA Weather Grp Beijing 100190 Peoples R China;

    Chinese Acad Sci Natl Space Sci Ctr State Key Lab Space Weather SIGMA Weather Grp Beijing 100190 Peoples R China;

    Chinese Acad Sci Natl Space Sci Ctr State Key Lab Space Weather SIGMA Weather Grp Beijing 100190 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天体物理学;天文学;
  • 关键词

    Magnetohydrodynamics (MHD); Sun: corona;

    机译:磁力学动力学(MHD);太阳:电晕;

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