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Wall-Roughness Effects on Flow and Scouring in Curved Channels with Gravel Beds

机译:墙面粗糙度对砾石床弯道内水流和冲刷的影响

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Due to a complex three-dimensional flow pattern, the outer banks of river bends are predisposed to erosion. When endangering civil structures, preventing measures to mitigate this erosion are thus required. Vertical ribs at protection walls for scour reduction have been applied to several flood protection projects in mountain rivers; nevertheless, no systematic and intensive study has been presented so far to evaluate their effect. This paper investigates experimentally the effect of vertical ribs, placed as macroroughness elements on the outer vertical wall of a 90 degrees laboratory channel bend. Systematic tests were performed using a wide and coarse grain-size distribution. Scour formation and velocity distribution were assessed in the channel in the presence of a macrorough outer bank, materialized in the laboratory by vertical elements placed on the outer vertical wall along the channel bend. Experiments showed that the macrorough outer bank changed considerably the bed morphology under equilibrium conditions. Maximum scour depth is considerably reduced by the vertical ribs placed at an optimal spacing on the bend outer wall. A considerable grain sorting process occurs across the cross section in the bend, which influences the scour process; differences are observed between situations with and without macrorough banks. The distribution of the time-averaged velocity field across the section shows the influence of the channel rough wall. An optimal macroroughness configuration in terms of scour reduction is discussed and proposed. It was observed that when spacing between vertical ribs is too reduced, these ribs act as uniformly distributed wall roughness, contributing to the width reduction due to the occupation of the cross section and increasing consequently the flow velocity with negative effects in scour reduction. (C) 2015 American Society of Civil Engineers.
机译:由于复杂的三维流动模式,河弯的外岸易遭受侵蚀。因此,当危害民用建筑时,需要采取预防措施以减轻这种侵蚀。减少河流冲刷的防护墙上的垂直肋条已应用于山区河流的几个防洪工程中。但是,到目前为止,还没有系统和深入的研究来评估其效果。本文通过实验研究了垂直肋的影响,这些肋作为宏观粗糙度元素放置在90度实验室通道弯头的外部垂直壁上。使用宽而粗的粒度分布进行了系统测试。在存在宏观粗糙外堤的情况下,评估了通道中的冲刷形成和速度分布,该外堤在实验室中是通过沿通道弯头放置在外部垂直壁上的垂直元素实现的。实验表明,在平衡条件下,粗大的外堤改变了床层的形态。通过以最佳间距放置在弯曲外壁上的垂直肋条,可最大程度地减小最大冲刷深度。弯头的横截面会发生大量的谷物分选过程,这会影响冲刷过程。在有和没有宏观粗糙库的情况之间观察到差异。时间平均速度场在截面上的分布显示了通道粗糙壁的影响。讨论并提出了一种基于冲刷减少的最佳宏观粗糙度配置。观察到,当垂直肋之间的间距太小时,这些肋起到均匀分布的壁粗糙度的作用,由于横截面的占据而导致宽度减小,并因此增加了流速,对减少冲刷具有负面影响。 (C)2015年美国土木工程师学会。

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