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Effect of Debris on the Local Scour at Bridge Piers

机译:碎片对桥墩当地冲刷的影响

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Scour is one of the most recurrent causes of failure of bridge structures in alluvial rivers.There is a variety of formulas for the assessment of bridge scour characteristics and for the design of suitable protection.Nevertheless,current approaches neglect the effect of debris carried by natural streams during floods,even when the accumulation of debris can extremely amplify the action of scouring processes.Until now,very limited efforts have been conducted to systematically investigate these effects.The present study focuses on the effect of debris on the maximum clear-water scour depth at cylindrical piers inserted in uniform,fully-developed turbulent flows in wide rectangular channels with flatbed composed of uniform,non-ripple forming sand.For these purposes,an experimental campaign was carried out by performing 17 long-duration(td = 7 days)experiments.The experimental tests were performed in the hydraulic structures channel at the University of Beira Interior.The channel was 0.83 m wide,12.0 m long and 1.0 m deep.In the central reach of the flume,a 3.0 m long and 0.30 m deep recess exists where scour is free to develop.The experiments were carried out with a cylindrical pier with 0.05 m diameter and two boxes,each with debris of different dimensions,either of triangular or rectangular shape.The tests were earned out with constant approach flow depth,d=0.15 m,and average approach flow velocity,U,approximately equal to the average approach flow velocity for the threshold condition of sediment entrainment,Uc = 0.31 m/s.For this velocity,the scour depth can be expected to be maximal.The experiments will give a special focus to the development of scour hole as the accumulated debris increase.Moreover,the experimental results will be compared with a reference experimental run without debris,so that the increments on scour depth due to the single debris clusters of different characteristics will be obtained and discussed.The following conclusions were obtained: i)The shape and position of the debris accumulation have a strong influence on the final scour depth.Debris placed on the bottom,upstream of the bridge pier,with a triangular shape,does not induce any increase in scour depths,the values are practically the same as the one obtained for the reference pier(without debris);ii)The method suggested by [3],as modified by [6],performed well,replicating the main trends observed in the experiments;and the influence of the relative submerged ratio of the debris on the scour depth,followed the trend observed previously by [8],with an increasing scour depth up to a critical value of the ratio,and then decreasing scour for ratios higher than this critical value.
机译:冲刷是在冲积rivers.There桥梁结构的失败的最经常性的原因之一是各种公式的桥冲刷特性的评估和适当protection.Nevertheless的设计,当前的方法忽略碎片通过自然携带的效果在洪水期间流,即使碎片的堆积可以极其放大现在淘processes.Until的作用,非常有限的努力已经进行了系统地研究这些effects.The目前研究的重点是碎片的影响最大净水冲刷深度在插入一致的圆柱形墩,充分发展的湍流在宽的矩形通道,平板车组成均匀,无波纹形成sand.For这些目的中的流动,一个实验系列通过进行17长持续时间(TD = 7天进行)experiments.The实验测试是在所述液压通道结构在贝拉Interior.The通道大学进行为0.83米宽,12.0米长和1.0米deep.In中央到达水槽的,3.0米长0.30米,深凹槽存在,其中冲刷自由develop.The实验用0.05米直径和具有圆柱形墩进行两个盒子,每个具有不同尺寸的碎片,或是三角形或矩形shape.The测试都是挣出来具有恒定流送深度,d = 0.15微米,平均方法流速,U,大约等于该平均的方法流速沉积物夹带阈值条件,UC = 0.31米/ s.For该速度,冲刷深度可以被预期为maximal.The实验会给特别侧重于冲刷孔的发展为累积的碎屑increase.Moreover,所述实验结果与没有碎屑的参考实验运行进行比较,从而由于不同特性的单个碎片簇上冲刷深度增量将获得并得到discussed.The如下结论:ⅰ)形状和碎屑聚集的位置上具有对放置在底部的最终冲刷depth.Debris有很强的影响,桥墩的上游,具有三角形形状,不诱导冲刷深度的任何增加,这些值实际上是相同的如用于参考墩(无碎片)中获得的一个;ⅱ)的方法,通过建议的[3],如改性由[6],表现良好,复制在实验中观察到的主要趋势;以及相对浸没比率的影响上冲深碎片,随后的趋势由[8]以前观察到的,具有增加的冲深到比的临界值,然后对比率减少冲刷大于该临界值时。

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