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首页> 外文期刊>Journal of Fluid Mechanics >Turbulent and wave kinetic energy budgets in the airflow over wind-generated surface waves
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Turbulent and wave kinetic energy budgets in the airflow over wind-generated surface waves

机译:风力产生的表面波气流中的湍流和波动能量预算

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摘要

The momentum and energy exchanges at the ocean surface are central factors determining the sea state, weather patterns and climate. To investigate the effects of surface waves on the air-sea energy exchanges, we analyse high-resolution laboratory measurements of the airflow velocity acquired above wind-generated surface waves using the particle image velocimetry technique. The velocity fields were further decomposed into the mean, wave-coherent and turbulent components, and the corresponding energy budgets were explored in detail. We specifically focused on the terms of the budget equations that represent turbulence production, wave production and wave-turbulence interactions. Over wind waves, the turbulent kinetic energy (TKE) production is positive at all heights with a sharp peak near the interface, indicating the transfer of energy from the mean shear to the turbulence. Away from the surface, however, the TKE production approaches zero. Similarly, the wave kinetic energy (WKE) production is positive in the lower portion of the wave boundary layer (WBL), representing the transfer of energy from the mean flow to the wave-coherent field. In the upper part of the WBL, WKE production becomes slightly negative, wherein the energy is transferred from the wave perturbation to the mean flow. The viscous and Stokes sublayer heights emerge as natural vertical scales for the TKE and WKE production terms, respectively. The interactions between the wave and turbulence perturbations show an energy transfer from the wave to the turbulence in the bulk of the WBL and from the turbulence to the wave in a thin layer near the interface.
机译:海洋表面的动量和能量交换是决定海况、天气模式和气候的核心因素。为了研究表面波对海气能量交换的影响,我们使用粒子图像测速技术分析了在风产生的表面波上方获得的气流速度的高分辨率实验室测量结果。将速度场进一步分解为平均分量、波相干分量和湍流分量,并详细探讨了相应的能量收支。我们特别关注代表湍流产生、波浪产生和波浪-湍流相互作用的预算方程项。在风浪上,湍流动能(TKE)的产生在所有高度都是正的,在界面附近有一个尖峰,表明能量从平均切变转移到湍流。然而,远离地表的TKE产量接近于零。类似地,波边界层(WBL)下部的波动能(WKE)产生为正,表示能量从平均流转移到波相干场。在WBL的上部,WKE的产生变得略微负,其中能量从波扰动转移到平均流。粘性和斯托克斯子层高度分别作为TKE和WKE生产条件的自然垂直尺度出现。波与湍流扰动之间的相互作用表明,在WBL的主体中,能量从波传递到湍流,在界面附近的薄层中,能量从湍流传递到波。

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