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Spectral structure of stratified turbulence: Direct numerical simulations and predictions by large eddy simulation (Conference Paper)

机译:分层湍流的光谱结构:直接数值模拟和大涡模拟预测(会议论文)

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摘要

Density stratification has a strong impact on turbulence in geophysical flows. Stratification changes the spatial turbulence spectrum and the energy transport and conversion within the spectrum. We analyze these effects based on a series of direct numerical simulations (DNS) of stratified turbulence. To facilitate simulations of real-world problems, which are usually beyond the reach of DNS, we propose a subgrid-scale turbulence model for large eddy simulations of stratified flows based on the Adaptive Local Deconvolution Method (ALDM). Flow spectra and integral quantities predicted by ALDM are in excellent agreement with direct numerical simulation. ALDM automatically adapts to strongly anisotropic turbulence and is thus a suitable tool for studying turbulent flow phenomena in atmosphere and ocean.
机译:密度分层对地球物理流的湍流有很大影响。分层改变了空间湍流谱以及谱内的能量传输和转换。我们基于分层湍流的一系列直接数值模拟(DNS)分析这些影响。为了简化通常在DNS范围之外的实际问题的仿真,我们提出了一种基于自适应局部反卷积方法(ALDM)的亚网格规模湍流模型,用于分层流的大涡流仿真。 ALDM预测的流量谱和积分量与直接数值模拟非常吻合。 ALDM自动适应强各向异性的湍流,因此是研究大气和海洋中湍流现象的合适工具。

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