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Effect of Sediment Size Scaling on Physical Modeling of Bridge Pier Scour

机译:沉积物尺度缩放对桥墩冲刷物理模拟的影响

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Local pier scour experiments were performed in the laboratory to investigate the effect of relative sediment size on pier scour depth using three uniform sediment sizes and three bridge pier designs at different geometric model scales. When the data from a large number of experimental and field investigations are filtered according to a Froude number criterion, the effect of relative sediment size on dimensionless pier scour depth is brought into focus. The choice of sediment size in the laboratory model distorts the value of the ratio of pier width to sediment size in comparison with the prototype which in turn causes larger values of scour depth in the laboratory than in the field. This model distortion due to sediment size is shown to be related to the scaling of the large-scale unsteadiness of the horseshoe vortex by studying the relevant time scales of its coherent structure upstream of a bridge pier using acoustic Doppler velocimeter measurements. Observations of sediment movement, probability distributions of velocity components, and phase-averaging of velocity measured upstream of a bridge pier reveal properties of coherent motions that are discussed in terms of their contribution to the relationship between dimensionless pier scour depth and the ratio of pier width to sediment size over a large range of physical scales.
机译:在实验室中进行了局部码头冲刷试验,以研究三种相对均匀的沉积物尺寸和三种桥墩设计在不同几何模型比例下相对沉积物尺寸对码头冲刷深度的影响。当根据弗洛德数准则对来自大量实验和现场调查的数据进行过滤时,相对沉积物尺寸对无因次墩距冲刷深度的影响成为人们关注的焦点。与原型相比,实验室模型中沉积物尺寸的选择会扭曲码头宽度与沉积物尺寸之比的值,这反过来会导致实验室中的冲刷深度值大于现场值。通过使用声学多普勒测速仪测量研究马蹄涡在桥墩上游的相干结构的相关时标,可以证明该因沉积物尺寸引起的模型变形与大规模马蹄涡的不定标有关。观察到的泥沙运动,速度分量的概率分布以及桥墩上游测得的速度的相位平均,揭示了相干运动的性质,这些相干运动是根据它们对无因次墩距冲刷深度与墩宽比之间关系的贡献而讨论的在很大范围的物理尺度上沉积。

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