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Decay of Pressure Fluctuation in the Hyporheic Zone around a Cylinder

机译:汽缸周围低渗区压力波动的衰减

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Erosion around a submerged cylinder is a well-studied problem, and is of particular interest in bridge pier scour applications. Particles erode when lift and drag forces overcome a critical threshold. These forces are typically studied from above the water-riverbed interface and are related to geometry and surficial processes. The present study maps hyporheic pressure fluctuations as they are related to surface water velocity fluctuations. Relatively, high-pressure events in the subsurface promote a destabilizing force from within the riverbed and increase the potential for the mobilization of sediment. Differential pressure transducers were fitted within a vertical cylinder in a movable bed flume. The pressure ports were flush with the cylinder surface and below the water-sand interface. The three-orthogonal components of velocity were recorded synchronously with differential pressure measured over a 15 mm depth. As expected, results show decay in pressure fluctuations as a function of depth.
机译:浸入式圆柱体周围的侵蚀是一个经过充分研究的问题,在桥墩冲刷应用中尤为重要。当举升和拖曳力超过临界阈值时,颗粒会腐蚀。这些力通常从水流界面的上方进行研究,并且与几何形状和表面过程有关。本研究绘制了流变压力波动,因为它们与地表水速度波动有关。相对而言,地下高压事件促进了河床内部的破坏力,并增加了动员沉积物的潜力。压差传感器安装在可移动床槽中的垂直圆柱体内。压力端口与气缸表面齐平,并在水沙界面下方。速度的三个正交分量与在15毫米深度上测得的压差同步记录。如预期的那样,结果表明压力波动随深度的变化而衰减。

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