Quasi-linear approximation for description of turbulent boundary layer and wind wave growth

Yu. Troitskaya , O. Druzhinin , D. Sergeev , A. Kandaurov , O. Ermakova , W.t. Tsai
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引用次数: 1

Abstract

This study describes an approximate quasi-linear model for the description of the turbulent boundary layer over steep surface waves. The model assumes that wave-induced disturbances of the atmospheric turbulent boundary layer could be reasonably described in a linear approximation with the momentum flux from wind to waves retained as the only nonlinear effect in the model. For the case of periodic long-crested waves, the model has been verified with a set of the original laboratory and numerical experiments. The laboratory experimental study of the airflow over the steep waves was performed by means of the PIV technique. The numerical study was performed with direct numerical simulation (DNS) of the turbulent airflow over waved surface at Re=15,000 for quasi-homogeneous waves, wave trains and parasitic capillaries riding on the crest of a steep waves. Examples are given of the application of the quasi-linear approximation to describe the turbulent boundary layer over waves with the continuous spectrum under the assumption of random phases of harmonics. In the latter case the quasi-linear model provides the growth rate of surface waves in the inertial interval of the surface wave spectrum proportional to w7/3 in agreement with predictions in [1].

描述湍流边界层和风浪增长的拟线性近似
本文描述了一种近似准线性模型,用于描述陡面波上的湍流边界层。该模型假定大气湍流边界层的波动扰动可以用线性近似合理地描述,而从风到波的动量通量是模型中唯一的非线性效应。对于周期性长波峰的情况,用一组原始的室内实验和数值实验对模型进行了验证。利用PIV技术对陡坡气流进行了室内实验研究。采用直接数值模拟(DNS)方法,对准均匀波、波列和寄生在陡坡波峰上的毛细血管在Re=15,000时的波面湍流气流进行了数值模拟。给出了在谐波随机相位假设下,用拟线性近似描述连续谱波上的湍流边界层的例子。在后一种情况下,拟线性模型提供了与w7/3成比例的面波谱惯性区间内的面波增长率,与[1]中的预测一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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