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A model of bridge pier scour during flood waves

机译:洪水潮时桥墩冲刷的模型

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摘要

The time-dependent bridge pier scour during flood waves is analysed. Scour experiments were conducted in a novel installation able to produce complex hydrographs with high precision. Experimental data were used to test scour formulas including a new mathematical model. Results confirm the reliability and superior performance of the proposed dimensionless, effective flow work based model under steady and unsteady hydraulic conditions. Analyses highlight the impact of different hydrographs on scour, demonstrating the strong control by the hydrograph shape of the temporal evolution of scour depth and scour rate, although final scour after a flood only depends on the total effective flow work exerted by the hydrograph on the sediment bed. Hysteresis between flow discharge and scour rate is reported and explained. Flow acceleration is shown to play a minor role in scouring. The proposed model is a promising alternative for computation of local scour under highly unsteady hydraulic conditions.
机译:分析了洪水期间随时间变化的桥墩冲刷情况。在新型装置中进行冲刷实验,该装置能够产生高精度的复杂水文图。实验数据用于测试冲刷公式,包括新的数学模型。结果证实了所提出的无量纲,有效流功模型在稳态和非稳态液压条件下的可靠性和优越性能。分析突出显示了不同水位图对冲刷的影响,表明了水位图形状对冲刷深度和冲刷速率随时间变化的强烈控制,尽管洪水后的最终冲刷仅取决于水位计对沉积物施加的总有效流量功床。报告并说明了流量排放与冲刷速度之间的滞后现象。流动加速显示在精练中起次要作用。所提出的模型是在高度不稳定的水力条件下计算局部冲刷的有希望的替代方法。

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