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Airside velocity measurements over the wind-sheared water surface using particle image velocimetry

机译:使用粒子图像测速仪测量风切水表面的空侧速度

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An experimental investigation of the airflow structure in the near surface region over the wind-sheared air-water interface is reported. The two-dimensional velocity fields in a plane perpendicular to the water surface were measured using particle image velocimetry (PIV) technique over a wind speed range from 1.5 to 4.4 m s~(-1). The results show a reduction in the mean velocity magnitudes and the tangential stresses when gravity waves appear on the surface. An enhanced vorticity layer was observed immediately above the water surface that extended to a height of approximately 2 cm. The vorticity was enhanced by an order of magnitude, and the energy dissipation rate was enhanced by a factor of 7 in this layer at all wind speeds. The vertical profiles of Reynolds stress, energy production, and dissipation indicate the contribution of surface waves in the enhanced transfer of momentum and energy between the two fluids. The results in this study show that the flow dynamics in a layer immediately adjacent to the water surface whose thickness is of the order of the significant wave height is significantly different from that at greater heights. Thus, it is concluded that the quantitative investigation of the flow in the immediate vicinity of the interface is vital for an improved understanding of the heat, mass, and momentum exchange between air and water. The present study demonstrates that PIV is an effective technique to accurately measure the velocity fields in this region.
机译:对风切变气-水界面上近表面区域的气流结构进行了实验研究。在1.5至4.4 m s〜(-1)的风速范围内,使用粒子图像测速(PIV)技术测量了垂直于水表面的二维速度场。结果表明,当重力波出现在表面上时,平均速度幅值和切向应力会减小。在水面正上方观察到增强的涡旋层,该涡旋层延伸至大约2 cm的高度。在所有风速下,该层的涡度都提高了一个数量级,并且能量消耗率提高了7倍。雷诺应力,能量产生和耗散的垂直剖面表明表面波对两种流体之间动量和能量传递增强的贡献。这项研究的结果表明,紧邻水面的一层的流动动力学与明显的波高明显不同,该层的厚度约为有效波高。因此,可以得出结论,对界面附近流动的定量研究对于增进对空气和水之间的热,质量和动量交换的理解至关重要。本研究表明,PIV是准确测量该区域速度场的有效技术。

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