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首页> 外文期刊>Journal of Fluid Mechanics >Direct numerical simulation of scalar transport in turbulent flows over progressive surface waves
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Direct numerical simulation of scalar transport in turbulent flows over progressive surface waves

机译:逐步表面波湍流流动标量传输的直接数值模拟

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摘要

The transport of passive scalars in turbulent flows over progressive water waves is studied using direct numerical simulation. A combined pseudo-spectral and finite-difference scheme on a wave-surface-fitted grid is used to simulate the flow and scalar fields above the wave surface. Three representative wave ages (i.e. wave-to-wind speed ratios) are considered, corresponding to slow, intermediate and fast wind-waves, respectively. For each wave condition, four Schmidt numbers are considered for the scalar transport. The presence of progressive surface waves is found to induce significant wave-phase-correlated variation to the scalar field, with the phase dependence varying with the wave age. The time- and plane-averaged profiles of the scalar over waves of various ages exhibit similar vertical structures as those found in turbulence over a flat wall, but with the von Kármán constant and effective wave surface roughness for the mean scalar profile exhibiting considerable variation with the wave age. The profiles of the root-mean-square scalar fluctuations and the horizontal scalar flux exhibit good scaling in the viscous sublayer that agrees with the scaling laws previously reported for flat-wall turbulence, but with noticeable wave-induced variation in the viscous wall region. The profiles of the vertical scalar flux in the viscous sublayer exhibit apparent discrepancies from the reported scaling law for flat-wall turbulence, due to a negative vertical flux region above the windward face of the wave crest. Direct observation and quadrant-based conditional averages indicate that the wave-dependent distributions of the scalar fluctuations and fluxes are highly correlated with the coherent vortical structures in the turbulence, which exhibit clear wave-dependent characteristics in terms of both shape and preferential location.
机译:研究了使用直接数值模拟研究湍流流动在湍流流动中的传输。波表面拟合电网上的组合伪光谱和有限差分方案用于模拟波浪表面上方的流动和标量。考虑三个代表性波浪(即波浪风速度比),分别对应于缓慢,中间和快速的风波。对于每个波条件,考虑四个Schmidt号码用于标量传输。发现逐渐表面波的存在对标量场引起显着的波相相关变化,其相位依赖性随波浪时代而变化。各种年龄的标量的标量的时间和平均平均曲线表现出类似的垂直结构,如湍流在扁平壁上发现的那些,但是对于vonKármán恒定的波表面粗糙度,用于平均标量曲线表现出相当大的变化波浪时代。根均方标量波动和水平标量焊剂的曲线在粘性子层中表现出很好的缩放,其与先前报道的扁平壁湍流的缩放法则相当,但是在粘性壁区域中具有明显的波引起的波动变化。由于波浪峰的迎风面上的负垂直磁通区域,粘性子层中垂直标量子磁通量的表现出明显的围绕围绕平面湍流的差异。直接观察和基于象限的条件平均值表明标量波动和助熔剂的波依赖性分布与湍流中的相干涡流结构高度相关,这在形状和优先位置方面表现出透明的波依赖性特征。

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