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首页> 外文期刊>Journal of atmospheric and oceanic technology >Calculating Reynolds Stresses from ADCP Measurements in the Presence of Surface Gravity Waves Using the Cospectra-Fit Method
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Calculating Reynolds Stresses from ADCP Measurements in the Presence of Surface Gravity Waves Using the Cospectra-Fit Method

机译:使用Cospectra-Fit方法在存在表面重力波的情况下通过ADCP测量计算雷诺应力

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摘要

Recently, the velocity observations of acoustic Doppler current profilers (ADCPs) have been successfully used to estimate turbulent Reynolds stresses in estuaries and tidal channels. However, the presence of surface gravity waves can significantly bias stress estimates, limiting application of the technique in the coastal ocean. This work describes a new approach to estimate Reynolds stresses from ADCP velocities obtained in the presence of waves. The method fits an established semiempirical model of boundary layer turbulence to the measured turbulent cospectra at frequencies below those of surface gravity waves to estimate the stress. Applied to ADCP observations made in weakly stratified waters and variable significant wave heights, estimated near-bottom and near-surface stresses using this method compared well with independent estimates of the boundary stresses in contrast to previous methods. Additionally, the vertical structure of tidal stress estimated using the new approach matched that inferred from a linear momentum balance at stress levels below the estimated stress uncertainties. Because the method makes an estimate of the horizontal turbulent length scales present as part of the model fit, these results can also enable a direct correction for the mean bias errors resulting from instrument tilt, if these scales are long relative to the beam separation.
机译:最近,声学多普勒电流剖面仪(ADCP)的速度观测已成功用于估算河口和潮汐通道中的湍流雷诺应力。但是,地表重力波的存在会严重影响应力估算,从而限制了该技术在沿海海洋中的应用。这项工作描述了一种新方法,可以根据存在波浪时获得的ADCP速度来估算雷诺应力。该方法将边界层湍流的建立的半经验模型拟合到在低于表面重力波频率的频率处测得的湍流共谱,以估计应力。与以前的方法相比,该方法适用于在弱分层水域和变化的显着波高中进行的ADCP观测,与使用边界应力的独立估算相比,使用此方法估算的近底应力和近地表应力很好。此外,使用新方法估算的潮汐应力的垂直结构与根据低于估计的应力不确定性的应力水平下的线性动量平衡推断的结果相符。由于该方法估算了作为模型拟合的一部分而出现的水平湍流长度尺度,因此,如果这些尺度相对于射束间隔较长,则这些结果还可以直接校正由仪器倾斜引起的平均偏差误差。

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