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Numerical solution of shallow water magnetohydrodynamic equations with non-flat bottom topography

机译:非平坦底部地形的浅水磁流体动力学方程的数值解

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The governing equations of shallow water magnetohydrodynamics describe the dynamics of a thin layer of nearly incompressible and electrically conducting fluids for which the evolution is nearly two-dimensional with magnetic equilibrium in the third direction. A high-resolution central-upwind scheme is applied to solve the model equations considering non-flat bottom topography. The suggested method is an upwind biased non-oscillatory finite volume scheme which doées not require a Riemann solver at each time step. To satisfy the divergence-free constraint, the projection method is used. Several case studies are carried out. For validation, a gas kinetic flux vector splitting scheme is also applied to the same model.
机译:浅水磁流体动力学的控制方程描述了几乎不可压缩的导电流体的薄层的动力学,该流体的演化几乎是二维的,并且在第三方向具有磁平衡。应用高分辨率的中央迎风方案来求解考虑非平坦底部地形的模型方程。所建议的方法是迎风偏向非振荡有限体积方案,该方案不需要在每个时间步都使用Riemann求解器。为了满足无散度约束,使用投影方法。进行了几个案例研究。为了验证,将气体动力学通量矢量分裂方案也应用于同一模型。

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