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A well-balanced scheme for the simulation tool-kit A-MaZe: implementation, tests, and first applications to stellar structure

机译:模拟工具包A-MaZe的均衡方案:实施,测试以及首次应用到恒星结构

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Characterizing stellar convection in multiple dimensions is a topic at the forefront of stellar astrophysics. Numerical simulations are an essential tool for this task. We present an extension of the existing numerical tool-kit A-MaZe that enables such simulations of stratified flows in a gravitational field. The finite-volume based, cell-centered, and time-explicit hydrodynamics solver of A-MaZe was extended such that the scheme is now well-balanced in both momentum and energy. The algorithm maintains an initially static balance between gravity and pressure to machine precision. Quasi-stationary convection in slab-geometry preserves gas energy (internal plus kinetic) on average, despite strong local up- and down-drafts. By contrast, a more standard numerical scheme is demonstrated to result in substantial gains of energy within a short time on purely numerical grounds. The test is further used to point out the role of dimensionality, viscosity, and Rayleigh number for compressible convection. Applications to a young sun in 2D and 3D, covering a part of the inner radiative zone, as well as the outer convective zone, demonstrate that the scheme meets its initial design goal. Comparison with results obtained for a physically identical setup with a time-implicit code show qualitative agreement.
机译:在多个维度上表征恒星对流是恒星天体物理学的前沿课题。数值模拟是完成此任务的必要工具。我们提出了现有的数字工具包A-MaZe的扩展,它可以对重力场中的分层流进行这种模拟。扩展了基于有限体积,以单元为中心,时间明确的A-MaZe流体力学求解器,从而使该方案在动量和能量上都达到了很好的平衡。该算法在重力和压力与机器精度之间保持最初的静态平衡。平板几何形状的准平稳对流平均保留了气体能量(内部能量和动能),尽管局部的上下气流很强。相比之下,更纯粹的数值方案被证明可以在短时间内以纯数值为基础获得大量能量。该测试还用于指出尺寸,粘度和瑞利数在可压缩对流中的作用。应用于2D和3D的年轻太阳(覆盖内部辐射区的一部分以及外部对流区)的应用表明,该方案可以满足其最初的设计目标。与具有时间隐式代码的物理上相同的设置所获得的结果进行比较,显示出定性的一致性。

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