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Statistical Properties of the Atmospheric Turbulent Boundary Layer over Steep Surface Waves

机译:陡表面波上大气湍流边界层的统计性质

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摘要

A new method of digital optical anemometry (Particle Image Velocimetry, PIV) of turbulent flows is suggested and implemented in the laboratory; it is based on the use of continuous laser radiation and highspeed video photography, providing continuous statistical ensembles of flow velocity fields. Application of the method to the study of wind field over waves has allowed us to perform, for the first time, direct measurements of velocity fields, averaged over turbulent pulsations induced by waves in the air flow. The experiments demonstrated that the velocity fields, averaged over the turbulent pulsations, are nonseparated even in the case of steep and breaking waves, when separation of the flow from the wave crests in the instantaneous fields is observed. Based on comparison with the experimental data, it is shown that the average wind fields over waves are described well quantitatively in the framework of semiempirical closure models of turbulence.
机译:提出并在实验室中实现了一种新的数字光学风速测量方法(Particle Image Velocimetry,PIV)。它基于连续激光辐射和高速视频摄影的使用,提供了流速场的连续统计集合。该方法在波浪风场研究中的应用首次使我们能够对气流速度场进行直接测量,该速度场是对气流中波浪引起的湍流脉动求平均的。实验表明,在湍流脉动中平均的速度场即使在陡峭和破碎的波浪中也不会分离,当观察到瞬时场中波峰的流动分离时。通过与实验数据的比较表明,在半经验湍流闭合模型的框架内,可以很好地定量描述波浪的平均风场。

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  • 来源
    《Doklady Earth Sciences》 |2010年第1期|P.922-926|共5页
  • 作者单位

    Institute of Applied Physics, Russian Academy of Sciences, ul. Ulyanova 46, Nizhni Novgorod, 603950 Russia;

    rnInstitute of Applied Physics, Russian Academy of Sciences, ul. Ulyanova 46, Nizhni Novgorod, 603950 Russia;

    rnInstitute of Applied Physics, Russian Academy of Sciences, ul. Ulyanova 46, Nizhni Novgorod, 603950 Russia;

    rnInstitute of Applied Physics, Russian Academy of Sciences, ul. Ulyanova 46, Nizhni Novgorod, 603950 Russia;

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