Experimental Investigation on Countermeasures for Gravel Bed Scouring and Driftwood Deposition Around Pier

Youichi Yasuda, Toshiki Ishitsuka
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Abstract

During floods, driftwood is generated simultaneously with sediment runoff, may impinge and accumulate on bridge piers. In this case, the water level rises upstream of the bridge, flooding from the river, resulting in major damage, such as overtopping and collapse of houses and bridges. Further, a high velocity flow passing over the pier due to impact of the flow at the upstream face of the pier causes scouring of the river bottom around the pier. In this study, the installation of consecutively assembled boulders was proposed in order to protect against scouring around the pier. A trapezoidal elliptical shape pier was also proposed as a countermeasure to reduce driftwoods capturing. As a comparative study, revetment blocks, which are conventionally used as countermeasure works, were installed. The experimental results revealed that the proposed structure was effective in reducing driftwood deposition and preventing gravel bed scouring, based on analysis using flow velocity with time series variation, vector diagrams, and driftwood model.
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码头周围砾石床冲刷和漂流木沉积对策的实验研究
洪水期间,漂流木与泥沙径流同时产生,可能会冲撞并堆积在桥墩上。在这种情况下,桥梁上游的水位上升,河水泛滥,造成重大损失,如房屋和桥梁倾覆和倒塌。此外,由于水流冲击桥墩上游面,高速流经桥墩时会冲刷桥墩周围的河底。在这项研究中,为了防止桥墩周围的冲刷,建议安装连续组装的巨石。此外,还提出了梯形椭圆墩作为减少流木捕获的对策。作为对比研究,还安装了传统上用作对策工程的护岸块石。实验结果表明,根据时间序列变化的流速、矢量图和浮木模型进行分析,所建议的结构能有效减少浮木沉积,防止砾石床冲刷。
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