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Coherent doppler Sonar: Sediment Flux and Turbulent velocities in a Wave Flume

机译:相干多普勒声纳:波浪水槽中的泥沙通量和湍流速度

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Observations of vertical sediment flux and velocity structure are made under prototype scale waves in the Wave Research Flume at the Ntional research Council (NRC) in Ottawa. Observations were made under regular waves of 3.5 s period with heights ranging from 20 to 70 cm. Direct measurement of sediment flux is made possible using 1.7 MHz pulse-to-pulse coherent sonar which determines concentration from acoustic backscatter levels and velocity using acoustic Doppler. Operating over a 0.8 m range, velocity profiles with 1.4 cm range resolution and a 0.5 cm s~-1 vertical velocity accuracy can be made at a rate of 30 profiles per second. We find that there is an apparent balance between the mean downward flux of sediment and the upward flux due to turbulent motions. The component of (upward) vertical flux caused by wave action is small cmpared to the turbulent and mean components. Profiles of turbulence intensity are provided by the vertical velocity fluctuations, these profiles show a rapid rise to a peak value within 5 cm of hte bottom and then a subsequent decrease. The (near bottom) peak value of root-mean-square vertical velocity fluctuations are equal to the friction velocity characteristic of the bottom boundary layer. Tjhe decrease in turbulence with height above the bottom shows behavior consistent with the decrease in grid generated turbulence but appears sensitive to the length scales of the bed-forms rather than sand grain roughness.
机译:垂直沉积物通量和速度结构的观测是在渥太华国家研究委员会(NRC)的波浪研究水槽中的原型尺度波浪下进行的。在3.5 s周期的规则波下进行观察,高度范围为20到70 cm。使用1.7 MHz脉冲至脉冲相干声纳可直接测量沉积物通量,该声纳可利用声多普勒从声后向散射水平和速度确定浓度。在0.8 m的范围内运行时,可以以每秒30个轮廓的速率制作具有1.4 cm范围分辨率和0.5 cm s〜-1垂直速度精度的速度轮廓。我们发现,由于湍流运动,沉积物的平均向下通量和向上通量之间存在明显的平衡。与波动分量和均值分量相比,由波浪作用引起的(向上)垂直通量分量很小。湍流强度的分布是由垂直速度波动提供的,这些分布显示出在底部5 cm之内迅速上升到峰值,然后又下降。均方根垂直速度波动的(接近底部)峰值等于底部边界层的摩擦速度特性。湍流的减少随底部高度的增加而显示出与网格产生的湍流减少一致的行为,但对床形的长度尺度而不是沙粒的粗糙度敏感。

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