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VADER: A flexible, robust, open-source code for simulating viscous thin accretion disks

机译:VADER:灵活,健壮的开源代码,用于模拟粘性薄吸积盘

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摘要

The evolution of thin axisymmetric viscous accretion disks is a classic problem in astrophysics. While models based on this simplified geometry provide only approximations to the true processes of instability-driven mass and angular momentum transport, their simplicity makes them invaluable tools for both semi-analytic modeling and simulations of long-term evolution where two- or three-dimensional calculations are too computationally costly. Despite the utility of these models, the only publicly-available frameworks for simulating them are rather specialized and non-general. Here we describe a highly flexible, general numerical method for simulating viscous thin disks with arbitrary rotation curves, viscosities, boundary conditions, grid spacings, equations of state, and rates of gain or loss of mass (e.g., through winds) and energy (e.g., through radiation). Our method is based on a conservative, finite-volume, second-order accurate discretization of the equations, which we solve using an unconditionally-stable implicit scheme. We implement Anderson acceleration to speed convergence of the scheme, and show that this leads to factor of similar to 5 speed gains over non-accelerated methods in realistic problems, though the amount of speedup is highly problem-dependent. We have implemented our method in the new code Viscous Accretion Disk Evolution Resource (VADER), which is freely available for download from https://bitbucket.org/krumholz/vader/ under the terms of the GNU General Public License. (C) 2015 Elsevier B.V. All rights reserved.
机译:薄的轴对称粘性吸积盘的演化是天体物理学中的经典问题。虽然基于这种简化几何结构的模型仅提供了由不稳定性驱动的质量和角动量传输的真实过程的近似值,但它们的简单性使其成为进行半二维或半二维长期分析的建模和仿真的宝贵工具计算的计算量太大。尽管这些模型有用,但唯一可用于模拟它们的公开框架是相当专业且非通用的。在这里,我们描述了一种高度灵活的通用数值方法,用于模拟具有任意旋转曲线,粘度,边界条件,网格间距,状态方程以及质量(例如通过风)和能量(例如风)的得失率的粘性薄盘。 ,通过辐射)。我们的方法基于方程的保守,有限体积,二阶精确离散化,我们使用无条件稳定的隐式方案进行求解。我们实现了安德森加速来加快该方案的收敛速度,并表明,尽管加速量在很大程度上取决于问题,但在实际问题中,这导致非加速方法的速度提高了5倍。我们已经在新代码Viscous吸积磁盘演化资源(VADER)中实现了我们的方法,该代码可根据GNU通用公共许可从https://bitbucket.org/krumholz/vader/免费下载。 (C)2015 Elsevier B.V.保留所有权利。

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