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首页> 外文期刊>The Astrophysical Journal. Supplement Series >SELF-GRAVITATIONAL FORCE CALCULATION OF INFINITESIMALLY THIN GASEOUS DISKS ON NESTED GRIDS
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SELF-GRAVITATIONAL FORCE CALCULATION OF INFINITESIMALLY THIN GASEOUS DISKS ON NESTED GRIDS

机译:嵌套网格上无限薄气体磁盘的自重力计算

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摘要

We extend the work of Yen et al. and develop second-order formulae to accommodate a nested grid discretization for the direct self-gravitational force calculation for infinitesimally thin gaseous disks. This approach uses a two-dimensional kernel that is derived for infinitesimally thin disks and is free of artificial boundary conditions. The self-gravitational force calculation is presented in generalized convolution forms for a nested grid configuration. A numerical technique derived from a fast Fourier transform is employed to reduce the computational complexity to be nearly linear. By comparing with analytic potential-density pairs associated with the generalized Maclaurin disks, the extended approach is verified to be of second-order accuracy when using numerical simulations. The proposed method is accurate, computationally fast, and has the potential to be applied to studies of planetary migration and the gaseous morphology of disk galaxies.
机译:我们延长了Yen等人的工作。 并开发二阶公式,以适应嵌套的网格离散化,以实现无限薄气体盘的直接自重压力计算。 该方法使用用于无限细分磁盘的二维内核,并且没有人工边界条件。 自我重力计算以嵌套网格配置的广义卷积形式呈现。 采用从快速傅里叶变换导出的数值技术来降低计算复杂性几乎是线性的。 通过与与广义Maclaurin磁盘相关联的分析潜电密度对进行比较,在使用数值模拟时,将扩展方法被验证为二阶精度。 所提出的方法是准确的,计算地快速,并且具有应用于行星迁移的研究和盘星形的气态形态。

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