论文标题

天体物理模拟的圆柱坐标中流体动力方程的适当离散

A Proper Discretization of Hydrodynamic Equations in the Cylindrical Coordinates for Astrophysical Simulations

论文作者

Hanawa, Tomoyuki, Matsumoto, Yosuke

论文摘要

圆柱坐标通常用于计算流体动力学,当人们认为气流积聚到中心物体上时。尽管圆柱坐标在描述旋转方面具有多个优点,但它们沿着坐标起源(z轴)的轴具有明显的奇异性。这种奇异性在数值模拟中引入了困难。首先,很难重现跨Z轴的流动。其次,由于z轴附近的CFL条件极大地缩短了时间步长,因为其数值单元在方位角方向上的数值细胞在给定的角度分辨率方向上狭窄。在这里,我们提出了一个新的离散计划来克服这些困难。在我们的新方案中,我们考虑在评估跨每个细胞表面的通量时,考虑细胞内的单位矢量方向的变化。此外,我们通过在方位角细胞表面的热和动态压力中评估动量方程的径向分量中的源项。该新方案的设计为自由流的保存,以使离散方程的均匀密度,压力和速度Isan精确解的流量。这些改进对于在最内向区域中使用较低的角度分辨率至关重要,从而使每个时间步骤伸长。我们的例子表明,轴周围最内向的圆形区域只能通过六个数值细胞解决。除了SOD冲击管和旋转流出测试外,我们还向被磁盘包围的积聚恒星提出了应用。

Cylindrical coordinates are often used in computational fluid dynamics, in particular, when one considers gas flow accreting onto a central object. Although the cylindrical coordinates have several advantages in describing rotation, they have apparent singularity along the axis at the coordinate origin (z-axis). This singularity introduces difficulties in numerical simulations. First, it is difficult to reproduce the flow across the z-axis. Second, the time step is extremely shortened by the CFL condition near the z-axis because the numerical cell thereof is narrow in the azimuthal direction for a given angular resolution. Here, we propose a new discretization scheme to overcome these difficulties. In our new scheme, we consider changes in the direction of the unit vector within a cell when evaluating the flux across each cell surface. Besides, we evaluate the source term in the radial component of the momentum equation from the thermal and dynamic pressures working on the azimuthal cell surface. The new scheme is designed to be free-stream preserving so that flow with uniform density, pressure, and velocity isan exact solution of the discretized equation. These improvements are essential to using a lower angular resolution in the innermost area and thus to elongate each time step. Our examples demonstrate that the innermost circular region around the axis can be resolved by only six numerical cells. We present an application to an accreting compact star surrounded by a disk, in addition to Sod shock tube and rotating outflow tests.

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