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首页> 外文期刊>Journal of Computational Physics >A second-order unsplit Godunov scheme for cell-centered MHD: The CTU-GLM scheme
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A second-order unsplit Godunov scheme for cell-centered MHD: The CTU-GLM scheme

机译:用于以细胞为中心的MHD的二阶未分裂Godunov方案:CTU-GLM方案

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We assess the validity of a single step Godunov scheme for the solution of the magnetohydrodynamics equations in more than one dimension. The scheme is second-order accurate and the temporal discretization is based on the dimensionally unsplit Corner Transport Upwind (CTU) method of Colella. The proposed scheme employs a cell-centered representation of the primary fluid variables (including magnetic field) and conserves mass, momentum, magnetic induction and energy. A variant of the scheme, which breaks momentum and energy conservation, is also considered. Divergence errors are transported out of the domain and damped using the mixed hyperbolic/parabolic divergence cleaning technique by Dedner et al. (2002) [11]. The strength and accuracy of the scheme are verified by a direct comparison with the eight-wave formulation (also employing a cell-centered representation) and with the popular constrained transport method, where magnetic field components retain a staggered collocation inside the computational cell. Results obtained from two- and three-dimensional test problems indicate that the newly proposed scheme is robust, accurate and competitive with recent implementations of the constrained transport method while being considerably easier to implement in existing hydro codes.
机译:我们评估单步Godunov方案在一个以上维度上求解磁流体动力学方程的有效性。该方案是二阶准确的,并且时间离散化基于Colella的尺寸未拆分的角向风逆风(CTU)方法。提出的方案采用了以细胞为中心的主要流体变量(包括磁场)表示,并保留了质量,动量,磁感应强度和能量。还考虑了该方案的一种变体,它破坏了动量和节能。发散误差被移出域并使用Dedner等人的混合双曲/抛物线发散清洗技术进行阻尼。 (2002)[11]。通过与八波公式(也采用以单元为中心的表示法)和流行的约束传输方法进行直接比较,验证了该方案的强度和准确性,其中磁场分量在计算单元内部保留了交错配置。从二维和三维测试问题获得的结果表明,新提出的方案在最近的受限运输方法实施中具有鲁棒性,准确性和竞争力,同时在现有水力法则中也相当容易实现。

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