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首页> 外文期刊>Nonlinear processes in geophysics >Momentum and buoyancy transfer in atmospheric turbulent boundary layer over wavy water surface – Part 2: Wind–wave spectra
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Momentum and buoyancy transfer in atmospheric turbulent boundary layer over wavy water surface – Part 2: Wind–wave spectra

机译:波浪状水面大气湍流边界层中的动量和浮力传递–第2部分:风波谱

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Drag and mass exchange coefficients are calculated within a self-consistent problem for the wave-induced air perturbations and mean velocity and density fields using a quasi-linear model based on the Reynolds equations with down-gradient turbulence closure. This second part of the report is devoted to specification of the model elements: turbulent transfer coefficients and wave number-frequency spectra. It is shown that the theory agrees with laboratory and field experimental data well when turbulent mass and momentum transfer coefficients do not depend on the wave parameters. Among several model spectra better agreement of the theoretically calculated drag coefficients with TOGA (Tropical Ocean Global Atmosphere) COARE (Coupled Ocean–Atmosphere Response Experiment) data is achieved for the Hwang spectrum (Hwang, 2005) with the high frequency part completed by the Romeiser spectrum (Romeiser et al., 1997).
机译:使用基于具有向下梯度湍流闭合的雷诺方程的准线性模型,在波浪引起的空气扰动以及平均速度和密度场的自洽问题内,计算出阻力和质量交换系数。该报告的第二部分专门介绍模型元素的规范:湍流传递系数和波数-频谱。结果表明,当湍流质量和动量传递系数与波浪参数无关时,该理论与实验室和野外实验数据吻合良好。在几个模型光谱中,理论数据的阻力系数与TOGA(热带海洋全球大气)COARE(海洋-大气响应实验)数据的一致性更好,Home光谱(Hwang,2005年)的数据由Romeiser完成,频谱(Romeiser等,1997)。

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