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首页> 外文期刊>Journal of Fluid Mechanics >Direct numerical simulation and large-eddy simulation of stationary buoyancy-driven turbulence
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Direct numerical simulation and large-eddy simulation of stationary buoyancy-driven turbulence

机译:固定浮力驱动湍流的直接数值模拟和大涡模拟

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摘要

We report direct numerical simulation (DNS) and large-eddy simulation (LES) of statistically stationary buoyancy-driven turbulent mixing of an active scalar. We use an adaptation of the fringe-region technique, which continually supplies the flow with unmixed fluids at two opposite faces of a triply periodic domain in the presence of gravity, effectively maintaining an unstably stratified, but statistically stationary flow. We also develop a new method to solve the governing equations, based on the Helmholtz-Hodge decomposition, that guarantees discrete mass conservation regardless of iteration errors. Whilst some statistics were found to be sensitive to the computational box size, we show, from inner-scaled planar spectra, that the small scales exhibit similarity independent of Reynolds number, density ratio and aspect ratio. We also perform LES of the present flow using the stretched-vortex subgrid-scale (SGS) model. The utility of an SGS scalar flux closure for passive scalars is demonstrated in the present active-scalar, stably stratified flow setting. The multi-scale character of the stretched-vortex SGS model is shown to enable extension of some second-order statistics to subgrid scales. Comparisons with DNS velocity spectra and velocity-density cospectra show that both the resolved-scale and SGS-extended components of the LES spectra accurately capture important features of the DNS spectra, including small-scale anisotropy and the shape of the viscous roll-off.
机译:我们报告了直接的数值模拟(DNS)和大涡模拟(LES),它们由统计的,固定的,由浮力驱动的主动标量进行湍流混合。我们使用边缘区域技术的一种改编技术,该技术在存在重力的情况下,在三重周期域的两个相对面上连续向流中提供未混合的流体,从而有效地维持了不稳定的分层但统计上稳定的流。我们还基于Helmholtz-Hodge分解开发了一种求解控制方程的新方法,该方法可以确保离散质量守恒,而无需考虑迭代误差。虽然发现一些统计数据对计算盒的大小很敏感,但我们从内部缩放的平面光谱中可以看出,小尺度显示出相似性,而与雷诺数,密度比和纵横比无关。我们还使用拉伸涡流亚网格规模(SGS)模型执行当前流的LES。在当前的主动标量,稳定分层流量设置中,已证明了SGS标量通量闭锁用于被动标量的实用性。显示了拉伸涡旋SGS模型的多尺度特征,可以将某些二阶统计信息扩展到亚网格尺度。与DNS速度谱和速度密度共谱的比较表明,LES谱的分辨尺度分量和SGS扩展分量都准确地捕获了DNS谱的重要特征,包括小尺度各向异性和粘性滚降的形状。

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