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Dynamic pressure fluctuations at real-life plunge pool bottoms

机译:实际跳水水池底部的动态压力波动

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Scour of rock downstream of dam spillways may be generated by jet impact. Generally, jets impact into a plunge pool downstream and diffuse through the pool. This results in a turbulent shear layer, which generates significant pressure fluctuations that might enter underlying rock joints. Recent research performed at the Laboratory of Hydraulic Constructions in Lausanne revealed that these pressure fluctuations may be amplified inside rock joints and are directly responsible for progressive break-up of the rock. Hence, appropriate assessment of these pressure fluctuations is crucial for a physically correct scour evaluation. At present, a respective amount of data is available on pressure fluctuations measured on laboratory models and for perfectly flat pool bottoms. However, real-life plunge pools are characterized by a much more complicated bottom profile, which changes during scour formation. Therefore, a research project focuses on measurements of pressure fluctuations at appropriately shaped, laboratory scaled pool bottoms. The profiles to be tested have been derived from observed model and/or prototype cases. The obtained results are described in a companion paper.
机译:大坝溢洪道下游的岩石冲刷可能是由射流冲击产生的。通常,喷射流会冲入下游的暴跌水池,并在整个水池中扩散。这导致了湍流的剪切层,该剪切层产生了很大的压力波动,可能会进入下面的岩石节理中。在洛桑水利建筑实验室进行的最新研究表明,这些压力波动可能在节理内部放大,并直接导致岩石的逐渐破裂。因此,对这些压力波动的适当评估对于物理上正确的冲刷评估至关重要。目前,有关在实验室模型上测量的压力波动以及完美平坦的池底的相关数据量可提供。但是,现实中的暴跌水池的特征是底部轮廓复杂得多,底部轮廓在冲刷形成过程中会发生变化。因此,一个研​​究项目的重点是在适当形状,实验室规模的水池底部测量压力波动。要测试的配置文件是从观察到的模型和/或原型情况得出的。随附的论文中描述了获得的结果。

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