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Quasi-Linear Model of Interaction of Surface Waves with Strong and Hurricane Winds

机译:强风和飓风作用下的面波相互作用的准线性模型

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摘要

A quasi-linear model for determining the aerodynamic drag coefficient of the sea surface and the growth rate of surface waves under a hurricane wind is proposed.The model explains the reduction(stabilization)in the drag coefficient during hurricane winds.This model is based on the solution of the Reynolds equations in curvilinear coordinates with the use of the approximation of the eddy viscosity,which takes into account the presence of the viscous sublayer.The profile of the mean wind velocity is found with consideration for nonlinear wave stresses(wave momentum flux),whereas wave disturbances induced in air by waves on the water surface are determined in the context of linear equations.The model is verified by comparing the calculation results with experimental data for a wide range of wind velocities.The growth rate and drag coefficient for hurricane winds are calculated both with and without consideration for the shortwave portion of the wind-wave spectrum.On the basis of calculations with the quasi-linear model,a simple parametrization is proposed for the drag coefficient and the growth rate of surface waves during hurricane winds.This model is convenient for use in models of forecasting winds and waves.
机译:提出了一种用于确定海平面气动阻力系数和飓风作用下面波增长率的准线性模型,该模型解释了飓风期间阻力系数的减小(稳定化)。考虑到粘性子层的存在,利用涡流粘度的近似值,在曲线坐标系中解决了雷诺方程的问题。考虑了非线性波浪应力(波浪动量通量),找到了平均风速的分布),而在线性方程的背景下确定了水面波浪在空气中引起的波浪扰动。通过将计算结果与各种风速的实验数据进行比较,对模型进行了验证。在计算风波频谱的短波部分时和不考虑短波部分时都将计算飓风。基于准线性模型,针对飓风中的阻力系数和面波的增长率提出了一种简单的参数化方法。该模型便于在风和风的预报模型中使用。

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