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High Order Well-Balanced WENO Scheme for the Gas Dynamics Equations Under Gravitational Fields

机译:重力场下气体动力学方程的高阶平衡均衡WENO格式

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摘要

The gas dynamics equations, coupled with a static gravitational field, admit the hydrostatic balance where the flux produced by the pressure is exactly canceled by the gravitational source term. Many astrophysical problems involve the hydrodynamical evolution in a gravitational field, therefore it is essential to correctly capture the effect of gravitational force in the simulations. Improper treatment of the gravitational force can lead to a solution which either oscillates around the equilibrium, or deviates from the equilibrium after a long time run. In this paper we design high order well-balanced finite difference WENO schemes to this system, which can preserve the hydrostatic balance state exactly and at the same time can maintain genuine high order accuracy. Numerical tests are performed to verify high order accuracy, well-balanced property, and good resolution for smooth and discontinuous solutions. The main purpose of the well-balanced schemes designed in this paper is to well resolve small perturbations of the hydrostatic balance state on coarse meshes. The more difficult issue of convergence towards such hydrostatic balance state from an arbitrary initial condition is not addressed in this paper.
机译:气体动力学方程式与静态重力场相结合,可以得出静水力平衡,其中压力产生的通量被重力源项精确抵消了。许多天体物理问题涉及引力场中的流体动力学演化,因此在模拟中正确捕捉引力的影响至关重要。引力的处理不当会导致溶液在平衡附近振荡或长时间运行后偏离平衡。本文针对该系统设计了高阶,平衡良好的有限差分WENO方案,该方案既可以精确保持静水压平衡状态,又可以保持真正的高阶精度。进行了数值测试,以验证高阶精度,良好平衡的属性以及对于平滑和不连续解决方案的良好分辨率。本文设计的良好平衡方案的主要目的是很好地解决粗网格上静水平衡状态的细微扰动。本文没有解决从任意初始条件向这种静水平衡状态收敛的更困难的问题。

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