Application of Two-dimensional Finite Volume Method to Protoplanetary Disks

T. Chakkour
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Abstract

Many fascinating astrophysical phenomena can be simulated insufficiently by standard numerical schemes for the compressible hydrodynamics equations. In the present work, a high performant 2D hydrodynamical code has been developed. The model is designed for the planetary formation that consists of momentum, continuity and energy equations. Since the two-phase model seems to be hardly executed, we will show in a simplified form, the implementation of this model in one-phase. It is applied to the Solar System that such stars can form planets. The finite volume method (FVM) is used in this model. We aim to develop a first-order well-balanced scheme for the Euler equations in the the radial direction, combined with second-order centered ux following the radial direction. This conception is devoted to balance the uxes, and guarantee hydrostatic equilibrium preserving. Then the model is used on simplified examples in order to show its ca- pability to maintain steady-state solutions with a good precision. Additionally, we demonstrate the performance of the numerical code through simulations. In particularly, the time evolution of gas orbited around the star, and some proper- ties of the Rossby wave instability are analyzed. The resulting scheme shows consequently that this model is robust and simple enough to be easily implemented.
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二维有限体积法在原行星盘中的应用
可压缩流体力学方程的标准数值格式不能充分地模拟许多令人着迷的天体物理现象。在目前的工作中,开发了一个高性能的二维流体力学代码。该模型是为行星的形成而设计的,由动量、连续性和能量方程组成。由于两阶段模型似乎很难执行,我们将以一种简化的形式展示该模型在一阶段的实现。这类恒星可以形成行星的说法适用于太阳系。该模型采用有限体积法(FVM)。我们的目标是建立一个一阶匀称欧拉方程的径向格式,并结合沿径向的二阶居心ux。这个概念致力于平衡管道,并保证流体静力平衡的保持。通过简化算例,验证了该模型能以较好的精度保持稳态解。此外,我们还通过仿真验证了数值代码的性能。特别地,分析了围绕恒星运行的气体的时间演化,以及罗斯比波不稳定性的一些性质。结果表明,该模型具有鲁棒性和简单性,易于实现。
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来源期刊
International Journal of Mechanics
International Journal of Mechanics Engineering-Computational Mechanics
CiteScore
1.60
自引率
0.00%
发文量
17
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