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首页> 外文期刊>Astronomy and astrophysics >A Jacobian-free Newton-Krylov method for time-implicit multidimensional hydrodynamics - Physics-based preconditioning for sound waves and thermal diffusion
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A Jacobian-free Newton-Krylov method for time-implicit multidimensional hydrodynamics - Physics-based preconditioning for sound waves and thermal diffusion

机译:隐式多维流体力学的无雅可比牛顿-克雷洛夫方法-基于物理的声波和热扩散预处理

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This work is a continuation of our efforts to develop an efficient implicit solver for multidimensional hydrodynamics for the purpose of studying important physical processes in stellar interiors, such as turbulent convection and overshooting. We present an implicit solver that results from the combination of a Jacobian-free Newton-Krylov method and a preconditioning technique tailored to the inviscid, compressible equations of stellar hydrodynamics. We assess the accuracy and performance of the solver for both 2D and 3D problems for Mach numbers down to 10-6. Although our applications concern flows in stellar interiors, the method can be applied to general advection and/or diffusion-dominated flows. The method presented in this paper opens up new avenues in 3D modeling of realistic stellar interiors allowing the study of important problems in stellar structure and evolution.
机译:这项工作是我们为多维流体力学开发有效的隐式求解器的努力的继续,目的是研究恒星内部的重要物理过程,例如湍流和过冲。我们提出了一个隐式求解器,它是由无雅可比牛顿-克雷洛夫方法和为恒星流体力学的无粘性可压缩方程式量身定制的预处理技术相结合而产生的。对于马赫数低至10-6的2D和3D问题,我们评估求解器的准确性和性能。尽管我们的应用涉及恒星内部的流动,但该方法可应用于一般对流和/或扩散为主的流动。本文介绍的方法为真实恒星内部的3D建模开辟了新途径,从而可以研究恒星结构和演化中的重要问题。

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