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Synchronous measurements of the velocity and concentration in low density turbidity currents using an Acoustic Doppler Velocimeter

机译:使用声学多普勒测速仪同步测量低密度浊流中的速度和浓度

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摘要

Low density turbidity currents have been investigated in a laboratory flume. An Acoustic Doppler Velocimeter (ADV) was used to measure the velocity. The dimensionless velocity profiles were compared with previous studies to check the accuracy of acoustic measuring techniques for turbidity currents. Successful use of the ADV to measure the current velocity has led to interest in the technique of using acoustic sensors to estimate concentrations. Acoustic backscattering analyses are used for estimating the sediment concentration in turbidity currents. With this approach, concentration measurements can be reasonably well represented by a similarity profile. Using this technique, an accurate estimation of the concentration close to the bed, where obtaining reliable concentration data by sampling techniques is difficult, is possible. The results show that a power relation is a good estimate for the concentration distribution in this region, for which no reliable expressions have been provided previously. Successful estimation of the velocity and concentration, in the present experiments, indicates that this technique could be appropriate and useful for determining the flow structure in turbidity currents.
机译:低密度浊流已在实验室水槽中进行了研究。声学多普勒测速仪(ADV)用于测量速度。将无量纲速度分布图与以前的研究进行了比较,以检查浊度电流的声学测量技术的准确性。成功使用ADV来测量当前速度已引起人们对使用声学传感器估算浓度的技术的兴趣。声学反向散射分析用于估算浊流中的泥沙浓度。通过这种方法,浓度测量值可以由相似性曲线合理地表示。使用该技术,可以精确估算接近床层的浓度,而难以通过采样技术获得可靠的浓度数据。结果表明,幂关系可以很好地估计该区域的浓度分布,此前尚未提供可靠的表达式。在本实验中,速度和浓度的成功估算表明,该技术对于确定浊流中的流动结构可能是适当和有用的。

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