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Temporal Development of Scour Holes around Submerged Stream Deflectors

机译:淹没流偏转器周围冲孔的时间发展

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Deflector structures used in many fish habitat rehabilitation schemes are frequently overtopped, yet few studies have examined the scour patterns created around submerged models. Furthermore, laboratory studies typically test smooth-surfaced structures, whereas those installed in natural rivers are generally made of logs or boulders. This study uses rough-surfaced paired deflectors to investigate the temporal evolution of scour for three overtopping ratios in identical approach flow conditions in a flume. Results show that maintaining identical discharge and raising the deflector height, which reduces the overtopping ratio (i.e., flow depth divided by structure height), generates increased depth and volume of scour next to the structures. The location of maximum depth and the rate of scouring with time is similar for the two highest deflectors (overtopping ratios of 1.22 and 1.83), but different for the lowest deflector model (overtopping ratio of 3.67). To improve the success rate of river restoration projects using in-stream structures, the overtopping ratio should be considered in equations that predict the scour depth evolution with time.
机译:许多鱼类栖息地恢复计划中使用的偏转器结构经常被超负荷使用,但很少有研究检查淹没模型周围产生的冲刷模式。此外,实验室研究通常会测试表面光滑的结构,而安装在天然河流中的结构通常由原木或巨石制成。这项研究使用粗糙的成对偏转器研究了在相同进水流条件下水槽中三种超顶比率下冲刷的时间演变。结果表明,保持相同的排水量并提高导流板的高度,从而降低覆盖率(即,水流深度除以结构高度),会在结构旁产生较大的冲刷深度和冲刷量。最大深度的位置和随时间的冲刷速率对于两个最大的导流板(覆盖率分别为1.22和1.83)相似,但对于最低的导流板模型则不同(覆盖率为3.67)。为了提高使用河床结构的河流修复项目的成功率,应在预测冲刷深度随时间变化的方程式中考虑过顶比。

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