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首页> 外文期刊>Astronomy and astrophysics >A well-balanced finite volume scheme for the Euler equations with gravitation - The exact preservation of hydrostatic equilibrium with arbitrary entropy stratification
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A well-balanced finite volume scheme for the Euler equations with gravitation - The exact preservation of hydrostatic equilibrium with arbitrary entropy stratification

机译:具有引力的Euler方程的平衡有限体积方案-任意熵分层的静水平衡的精确保持。

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Context. Many problems in astrophysics feature flows which are close to hydrostatic equilibrium. However, standard numerical schemes for compressible hydrodynamics may be deficient in approximating this stationary state, where the pressure gradient is nearly balanced by gravitational forces. Aims. We aim to develop a second-order well-balanced scheme for the Euler equations. The scheme is designed to mimic a discrete version of the hydrostatic balance. It therefore can resolve a discrete hydrostatic equilibrium exactly (up to machine precision) and propagate perturbations, on top of this equilibrium, very accurately. Methods. A local second-order hydrostatic equilibrium preserving pressure reconstruction is developed. Combined with a standard central gravitational source term discretization and numerical fluxes that resolve stationary contact discontinuities exactly, the well-balanced property is achieved. Results. The resulting well-balanced scheme is robust and simple enough to be very easily implemented within any existing computer code that solves time explicitly or implicitly the compressible hydrodynamics equations. We demonstrate the performance of the well-balanced scheme for several astrophysically relevant applications: wave propagation in stellar atmospheres, a toy model for core-collapse supernovae, convection in carbon shell burning, and a realistic proto-neutron star.
机译:上下文。天体物理学中的许多问题都以接近静水力平衡的流动为特征。但是,用于可压缩流体动力学的标准数值方案可能不足以逼近该稳态,在该稳态下压力梯度几乎由重力平衡。目的我们旨在为Euler方程开发一个二阶均衡的方案。该方案旨在模拟静压天平的离散版本。因此,它可以精确地解决离散的静液压平衡(达到机器精度)并在此平衡之上非常精确地传播扰动。方法。建立了局部二阶静水压力平衡压力恢复模型。结合标准的中心重力源项离散化和精确解决静止接触不连续性的数值通量,可以实现平衡良好的特性。结果。所产生的良好平衡的方案既健壮又简单,足以在任何显式或隐式解决可压缩流体力学方程式的现有计算机代码中轻松实施。我们证明了在几种天体相关应用中均衡方案的性能:恒星大气中的波传播,核塌陷超新星的玩具模型,碳壳燃烧中的对流以及真实的中子星。

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