数值模拟斜坡流动中的湍流和波浪

E. Fedorovich, A. Shapiro
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引用次数: 2

摘要

采用直接数值模拟(DNS)研究了在无旋转条件下沿热扰动(以表面浮力通量计)倾斜表面的渐消和渐消流动的性质。在无限平面斜坡上进行了均匀表面力的数值实验。所模拟的流动是普朗特(Prandtl, 1942)一维层流斜坡流的湍流类似物。模拟的流动在很大程度上达到准稳定的周期状态,湍流波动被持续的低频振荡运动所修正,其频率等于环境浮力频率与斜率角正弦的乘积。这些振荡波型运动是由湍流和环境稳定分层之间的相互作用造成的,尽管表面浮力在时间上是恒定的。分析了模拟坡流的平均流场结构和湍流统计。提出了地表浮力通量作用下坡壁稳定流动的积分动力相似约束,并利用DNS数据进行了定量验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Turbulence and waves in numerically simulated slope flows
Direct numerical simulation (DNS) is applied to investigate properties of katabatic and anabatic flows along thermally perturbed (in terms of surface buoyancy flux) sloping surfaces in the absence of rotation. Numerical experiments are conducted for homogeneous surface forcings over infinite planar slopes. The simulated flows are the turbulent analogs of the Prandtl (1942) one-dimensional laminar slope flow. The simulated flows achieve quasi-steady periodic regimes at large times, with turbulent fluctuations being modified by persistent low-frequency oscillatory motions with frequency equal to the product of the ambient buoyancy frequency and the sine of the slope angle. These oscillatory wave-type motions result from interactions between turbulence and ambient stable stratification despite the temporal constancy of the surface buoyant forcing. The structure of the mean-flow fields and turbulence statistics in simulated slope flows is analyzed. An integral dynamic similarity constraint for steady slope/wall flows forced by surface buoyancy flux is proposed and quantitatively verified against the DNS data.
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来源期刊
Mecanique & Industries
Mecanique & Industries 工程技术-工程:机械
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