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Magnetohydrodynamic simulation code CANS+: Assessments and applications

机译:磁流体动力学模拟代码CANS +:评估和应用

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We present a new magnetohydrodynamic (MHD) simulation package with the aim of providing accurate numerical solutions to astrophysical phenomena where discontinuities, shock waves, and turbulence are inherently important. The code implements the Harten–Lax–van Leer–discontinuitues (HLLD) approximate Riemann solver, the fifth-order-monotonicity-preserving interpolation (MP5) scheme, and the hyperbolic divergence cleaning method for a magnetic field. This choice of schemes has significantly improved numerical accuracy and stability, and saved computational costs in multidimensional problems. Numerical tests of one- and two-dimensional problems show the advantages of using the high-order scheme by comparing with results from a standard second-order total variation diminishing monotonic upwind scheme for conservation laws (MUSCL) scheme. The present code enables us to explore the long-term evolution of a three-dimensional accretion disk around a black hole, in which compressible MHD turbulence causes continuous mass accretion via nonlinear growth of the magneto-rotational instability (MRI). Numerical tests with various computational cell sizes exhibits a convergent picture of the early nonlinear growth of the MRI in a global model, and indicates that the MP5 scheme has more than twice the resolution of the MUSCL scheme in practical applications.
机译:我们提出了一种新的磁流体动力学(MHD)模拟软件包,旨在为天体物理现象提供精确的数值解决方案,在这些天体物理现象中,间断性,冲击波和湍流本质上是重要的。该代码实现了Harten–Lax–vanLeer间断(HLLD)近似Riemann求解器,保留五阶单调性的插值(MP5)方案以及磁场的双曲散度清理方法。这种方案的选择显着提高了数值精度和稳定性,并节省了多维问题中的计算成本。一维和二维问题的数值测试通过与标准二阶总变分减小守恒律单调迎风方案(MUSCL)方案的结果进行比较,显示了使用高阶方案的优势。本代码使我们能够探索围绕黑洞的三维吸积盘的长期演变,其中可压缩的MHD湍流通过磁旋转不稳定性(MRI)的非线性增长而导致连续的吸积。具有各种计算像元大小的数值测试显示了MRI在整体模型中早期非线性增长的趋同图,表明MP5方案在实际应用中的分辨率是MUSCL方案的两倍以上。

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