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Statistical Parameters of the Air Turbulent Boundary Layer over Steep Water Waves Measured by the PFV Technique

机译:PFV技术测得的陡水波湍流边界层的统计参数

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摘要

A turbulent airflow with a centerline velocity of 4ms-1 above 2.5-Hz mechanically generated gravity waves of different amplitudes has been studied in experiments using the particle image velocimetry (P1V) technique. Direct measurements of the instantaneous flow velocity fields above a curvilinear interface demonstrating flow separation are presented. Because the airflow above the wavy water surface is turbulent and nonstationary, the individual vector fields are conditionally averaged sampled on the phase of the water elevation. The flow patterns of the phase-averaged fields are relatively smooth. Because the averaged flow does not show any strongly nonlinear effects, the quasi-linear approximation can be used. The parameters obtained by the flow averaging are compared with the theoretical results obtained within the theoretical quasi-linear model of a turbulent boundary layer above the wavy water surface. The wave-induced pressure disturbances in the airflow are calculated using the retrieved statistical ensemble of wind How velocities. The energy flux from the wind to waves and the wind-wave interaction parameter are estimated using the obtained wave-induced pressure disturbances. The estimated values of the wind-wave interaction parameter are in a good agreement with the theory.
机译:在实验中使用粒子图像测速(P1V)技术研究了中心线速度高于2.5 Hz的机械产生的重力波的4ms-1湍流。给出了在曲线界面上方的瞬时流速场的直接测量结果,表明了流动分离。由于波浪水面上方的气流湍流且不稳定,因此在水位高程阶段有条件地对各个矢量场进行平均采样。相平均场的流动模式是相对平滑的。由于平均流量不显示任何强烈的非线性影响,因此可以使用准线性近似。将通过流量平均获得的参数与在波浪水表面上方的湍流边界层的理论准线性模型中获得的理论结果进行比较。波浪在气流中引起的压力扰动是使用风速的统计合奏来计算的。使用获得的波浪引起的压力扰动估算从风到波的能量通量和风-波相互作用参数。风浪相互作用参数的估计值与理论相符。

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  • 来源
    《Journal of Physical Oceanography》 |2011年第8期|p.1421-1454|共34页
  • 作者单位

    Institute of Applied Physics, Russian Academy of Sciences, Nizhny Novgorod, Russia;

    Institute of Applied Physics, Russian Academy of Sciences, Nizhny Novgorod, Russia;

    Institute of Applied Physics, Russian Academy of Sciences, Nizhny Novgorod, Russia;

    Institute of Applied Physics, Russian Academy of Sciences, Nizhny Novgorod, Russia;

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