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Staggered schemes for fluctuating hydrodynamics

机译:波动流体动力学的交错方案

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摘要

We develop numerical schemes for solving the isothermal compressible and incompressible equations of fluctuating hydrodynamics on a grid with staggered momenta. We develop a second-order accurate spatial discretization of the diffusive, advective, and stochastic fluxes that satisfies a discrete fluctuation-dissipation balance and construct temporal discretizations that are at least second-order accurate in time deterministically and in a weak sense. Specifically, the methods reproduce the correct equilibrium covariances of the fluctuating fields to the third (compressible) and second (incompressible) orders in the time step, as we verify numerically. We apply our techniques to model recent experimental measurements of giant fluctuations in diffusively mixing fluids in a microgravity environment [A. Vailati et al., Nat. Comm., 2 (2011), 290]. Numerical results for the static spectrum of nonequilibrium concentration fluctuations are in excellent agreement between the compressible and incompressible simulations and in good agreement with experimental results for all measured wavenumbers
机译:我们开发了数值方案来求解具有交错动量的网格上流体动力学波动的等温可压缩和不可压缩方程。我们开发了满足离散离散波动耗散平衡的扩散,对流和随机通量的二阶精确空间离散,并构造了时间上离散的图像,这些时间离散在确定性和弱意义上至少为二阶准确。具体来说,如我们数值验证的那样,这些方法在时间步中将波动场的正确平衡协方差再现为第三(可压缩)和第二(不可压缩)阶。我们运用我们的技术来模拟最近在微重力环境下扩散混合流体中巨大波动的实验测量结果[A. Vailati等,Nat。 Comm。,2(2011),290]。非平衡浓度波动的静态谱的数值结果在可压缩和不可压缩模拟之间非常吻合,并且在所有测量波数下都与实验结果吻合

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