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首页> 外文期刊>Journal of Hydraulic Engineering >Local Scour and Riprap Stability at Bridge Piers in a Degrading Channel
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Local Scour and Riprap Stability at Bridge Piers in a Degrading Channel

机译:降解通道中桥墩的局部冲刷和裂口稳定性

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摘要

The experimental study examines local scouring and riprap stability at bridge piers in rivers subject to bed degradation. The data show that the equilibrium bed profile associated with that with or without a pier is essentially the same, except for the obvious section around the pier. Total scour depth is shown to be the sum of bed degradation and pier scour depth. The latter can be computed from the time-average live-bed scour depth associated with the undisturbed velocity ratio before bed degradation. The experimental data also show that pier-scour depth is invariant with time, for t≥24 h. In a degrading channel, riprap around a pier will eventually develop into a stable mound when the bed shear stresses reduce with bed degradation. An auxiliary test shows that the mound is very vulnerable to another designed flood flow accompanied by large dunes. This type of riprap instability may be called bed-degradation induced failure.
机译:实验研究检查了河床受河床退化影响的局部冲刷和跳石的稳定性。数据表明,与有或没有墩的平衡床分布基本相同,除了墩周围的明显断面。总冲刷深度显示为床层退化与码头冲刷深度之和。后者可以根据与床降解前的原状速度比相关的时均活床冲刷深度进行计算。实验数据还表明,在t≥24h的时间内,墩墩冲刷深度随时间不变。在降解通道中,当床层剪切应力随床层降解而降低时,码头周围的跳石最终将发展成稳定的土墩。辅助测试表明,土墩很容易受到另一种设计的,带有大沙丘的洪水的侵蚀。这种类型的riprap不稳定性可以称为床降解引起的故障。

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