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Dual use of a sediment mixing tank for calibrating Acoustic backscatter and direct Doppler measurement of settling velocity

机译:沉积物混合池可用于校准声学反向散射和直接多普勒测量沉降速度

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While the Acoustic Doppler Velocimeter (ADV) is designed to determine fluid velocity, it is important to recognize that it is actually the velocity of the scatterers themselves that is measured. Thus in a calibration tank designed to relate sediment-induced backscatter to sediment concentration, the vertical velocity registered by an ADV at a given point is actually the true fluid velocity plus the sediment's settling velocity. And absent net vertical volume flux, the average vertical velocity registered by an ADV across a horizontal plane is equal to the mean sediment settling velocity. For this study, a series of ADV calibrations were run in a 118-liter re-circulating tank for six sand sizes between 63 and 150 microns. A grid of ADV measurements distributed in a horizontal plane across the tank revealed that the mean vertical velocity registered by the ADV in each case was indeed consistent with each grain size's settling velocity as independently measured by a “rapid sand analyzer” laboratory settling tube. In addition, a systematic increase in the proportionality between sand concentration and backscatter was observed with increasing grain size.
机译:虽然声学多普勒速度计(ADV)设计用于确定流体速度,但重要的是要认识到它实际上是测量的散射体本身的速度。因此,在设计用于将沉积物诱导的沉积物浓度相关的校准罐中,在给定点处登记的垂直速度实际上是真正的流体速度加上沉积物的沉降速度。并且不存在净垂直音量通量,横跨水平平面的ADV登记的平均垂直速度等于平均沉积物稳定速度。对于本研究,在118升重新循环罐中运行一系列的ADV校准,用于63到150微米之间的六个砂尺寸。分布在坦克的水平面中的adv测量网格显示,在每种情况下,在每种情况下,通过通过“快速砂分析仪”实验室沉降管的每个晶粒尺寸的沉降速度一致地一致地一致地一致地一致。此外,随着晶粒尺寸的增加,观察到砂浓度与反向散射之间的比例增加的系统增加。

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