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首页> 外文期刊>Theoretical and Computational Fluid Dynamics >A return toward equilibrium in a 2D Rayleigh–Taylor instability for compressible fluids with a multidomain adaptive Chebyshev method
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A return toward equilibrium in a 2D Rayleigh–Taylor instability for compressible fluids with a multidomain adaptive Chebyshev method

机译:使用多域自适应Chebyshev方法在可压缩流体的二维Rayleigh-Taylor不稳定性中返回平衡

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摘要

We numerically simulate a single-mode Rayleigh–Taylor instability between compressible miscible fluids with a highly accurate self-adaptive pseudospectral Chebyshev multidomain method in two two-dimensional boxes at small aspect ratios. The simulations are started from rest and pursued until the return toward mechanical equilibrium of the mixing. Four regimes—linear and weakly nonlinear, nonlinear steady bubble rise, return toward equilibrium, and finally a system of acoustic waves—can be identified. We show that this one-dimensional system of stationary acoustic waves is damped by the physical viscosity. This provides a reference solution.
机译:我们使用高精度的伪拟谱Chebyshev多域方法在两个二维框中以小长宽比数值模拟可压缩混溶流体之间的单模瑞利-泰勒不稳定性。模拟从静止开始,一直进行到混合达到机械平衡为止。可以确定四种状态-线性和弱非线性,非线性稳定气泡上升,回到平衡状态,最后是声波系统。我们表明,这种一维的固定声波系统受到物理粘度的衰减。这提供了参考解决方案。

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