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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Impact of wind waves on the air-sea fluxes: A coupled model
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Impact of wind waves on the air-sea fluxes: A coupled model

机译:风波对海气通量的影响:耦合模型

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A revised wind-over-wave-coupling model is developed to provide a consistent description of the sea surface drag and heat/moister transfer coefficients, and associated wind velocity and temperature profiles. The spectral distribution of short wind waves in the decimeter to a few millimeters range of wavelengths is introduced based on the wave action balance equation constrained using the Yurovskaya et al. (2013) optical field wave measurements. The model is capable to reproduce fundamental statistical properties of the sea surface, such as the mean square slope and the spectral distribution of breaking crests length. The surface stress accounts for the effect of airflow separation due to wave breaking, which enables a better fit of simulated form drag to observations. The wave breaking controls the overall energy losses for the gravity waves, but also the generation of shorter waves including the parasitic capillaries, thus enhancing the form drag. Breaking wave contribution to the form drag increases rapidly at winds above 15 m/s where it exceeds the nonbreaking wave contribution. The overall impact of wind waves (breaking and nonbreaking) leads to a sheltering of the near-surface layer where the turbulent mixing is suppressed. Accordingly, the air temperature gradient in this sheltered layer increases to maintain the heat flux constant. The resulting deformation of the air temperature profile tends to lower the roughness scale for temperature compared to its value over the smooth surface.
机译:开发了修订的风浪耦合模型,以提供对海面阻力和热/湿气传递系数以及相关风速和温度曲线的一致描述。根据使用Yurovskaya等人约束的波动平衡方程,引入了分米到几毫米波长范围内的短风波的光谱分布。 (2013年)光场波测量。该模型能够重现海面的基本统计特性,例如均方斜率和断裂波峰长度的频谱分布。表面应力说明了由于波浪破坏而导致的气流分离的影响,这使得模拟形式的阻力更好地适合观测。碎波控制了重力波的总体能量损失,还控制了包括寄生毛细管在内的较短波的产生,从而增强了形式阻力。在超过15 m / s的风中,碎波对形式阻力的贡献迅速增加,超过了非碎波的贡献。风浪的整体冲击(破裂和不破裂)会导致对近表面层的遮挡,从而抑制湍流混合。因此,该遮蔽层中的空气温度梯度增加以保持热通量恒定。与在光滑表面上的值相比,空气温度曲线的最终变形趋于降低温度的粗糙度等级。

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