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A numerical and theoretical study of wind over fast-propagating water waves

机译:快速繁殖水波风的数值与理论研究

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Effects of fast-propagating water waves on the overlying wind are investigated using simulation and theoretical analysis. By performing a large eddy simulation (LES) of turbulent wind over water waves with high wave age, we observe that the perturbation to wind velocity and pressure by the waves, or the wave-induced airflow, is mainly induced by the vertical movement of the wave surface. We perform scaling analysis to show that the turbulent stress effects on fast wave-induced airflow are negligible. Moreover, we find that the curvilinear model developed for opposing wave effects on wind by Cao et al. (J. Fluid Mech., vol. 901, 2020, p. A27) provides predictions that agree well with the present LES results of wind following fast waves. Our analyses of the results indicate that the fast wave-induced airflow is a quasilinear process. To elucidate the mechanisms for fast wave effects, we split the curvilinear model into two equations corresponding to wave kinematics and forcing by wave elevation, respectively. Using these equations, we illustrate that the vertical component of wave orbital velocity induces a strong airflow perturbation, which produces the dominant components of fast wave-induced airflow and determines its overall spatial structure. Furthermore, we discover that the weak components of fast wave-induced airflow are forced by the dominant components via viscous stress and by the forcing induced by wave elevation, and generate the form drag on the wave surface.
机译:通过模拟和理论分析,研究了快速传播的水波对上覆风的影响。通过对高波龄水波上的湍流风进行大涡模拟(LES),我们观察到波浪或波浪诱导气流对风速和压力的扰动主要由波面的垂直运动引起。我们进行了标度分析,以表明湍流应力对快波诱导气流的影响可以忽略不计。此外,我们发现,Cao等人(J.Fluid Mech.,vol.9012020,p.A27)为风的反向波浪效应开发的曲线模型提供的预测与目前的快波后风的LES结果非常一致。我们对结果的分析表明,快波诱导气流是一个准线性过程。为了阐明快波效应的机制,我们将曲线模型拆分为两个方程,分别对应于波浪运动学和波浪高程强迫。利用这些方程,我们说明了波轨道速度的垂直分量引起了强烈的气流扰动,这产生了快波诱导气流的主要分量,并决定了其整体空间结构。此外,我们还发现,快波诱导气流的弱组分受到主导组分通过粘性应力和波浪高度诱导的强迫,并在波面上产生形式阻力。

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