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Resolution effects and scaling in numerical simulations of passive scalar mixing in turbulence

机译:湍流中被动标量混合数值模拟中的分辨率效应和缩放

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摘要

The effects of finite grid resolution on the statistics of small scales in direct numerical simulations of turbulent mixing of passive scalars are addressed in this paper. Simulations at up to 20483 grid points with grid spacing [Delta]x varied from about 2 to 1/2 Batchelor scales ([eta]B) show that most conclusions on Schmidt number (Sc) dependence from prior work at less stringent resolution remain qualitatively correct, although simulations at resolution [Delta]x[approximate][eta]B are preferred and will give adequate results for many important quantities including the scalar dissipation intermittency exponent and structure functions at moderately high orders. For Sc>=1, since [eta]B=[eta]Sc-1/2 (where [eta] is the Kolmogorov scale), the requirement [Delta]x[approximate][eta]B is more stringent than the corresponding criterion [Delta]x[approximate][eta] for the velocity field, which is thus well resolved in simulations aimed at high Schmidt number mixing. A simple argument is given to help interpret the effects of Schmidt and Reynolds numbers on trends towards local isotropy and saturation of intermittency at high Schmidt number. The present results also provide evidence for a trend to isotropy at high Reynolds number with fixed Sc=1.0. This is a new observation apparently not detected in less well resolved simulations in the past, and will require further investigation in the future.
机译:本文讨论了有限网格分辨率对无源标量湍流混合直接数值模拟中小尺度统计量的影响。在网格间距Δx从约2到1/2 Batchelor尺度(ΔB)变化的多达20483个网格点上进行的仿真表明,在较不严格的分辨率下,来自先前工作的关于施密特数(Sc)的大多数结论在质量上仍然保持不变。正确的是,尽管优选分辨率为Δx×近似ηB的模拟,并且将为许多重要量(包括标量耗散间歇指数和中等高阶的结构函数)给出足够的结果。对于Sc> = 1,因为ηB=ηSc-1/ 2(其中η是Kolmogorov标度),所以要求Δx×近似ηB比相应的更严格。速度场的标准Δx×近似η,因此在针对高施密特数混合的模拟中可以很好地解决。给出了一个简单的论点,以帮助解释Schmidt和Reynolds数对高Schmidt数下局部各向同性和间歇性饱和趋势的影响。本研究结果还提供了在固定Sc = 1.0的高雷诺数下各向同性趋势的证据。显然,这是以前在分辨率较差的模拟中未发现的新观察结果,将来需要进一步研究。

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