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首页> 外文期刊>Natural Hazards and Earth System Sciences Discussions >Effects of Y-type spillway lateral contraction ratios on debris-flowpatterns and scour features downriver of a check dam
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Effects of Y-type spillway lateral contraction ratios on debris-flowpatterns and scour features downriver of a check dam

机译:y型溢洪道横向收缩比对碎片 - 流动模具和冲刷特征的效果

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Debris flows often cause devastating damage to property and can injure or kill residents in mountainous areas. The construction of check dams in debris-flow valleys is considered a useful strategy for mitigating the damages downstream. In this paper, a new type of spillway structure with lateral contraction was proposed to distribute debris flows after the check dam storage filled up. Four different lateral contraction ratios of the spillway were considered in experiments that investigated debris-flow patterns, scour characteristics, and energy dissipation rates when debris flows passed through the spillway. The results indicated that lateral contraction considerably influenced the extension of debris-flow nappes. The drop length of the nappe at η??=??0.7 (η?means lateral contraction ratio) was approximately 1.4?times larger than at η??=??0.4. The collision, friction, and mixing forces between the debris-flow nappes and debris flows in downstream plunge pools dissipated much of the debris-flow kinetic energy, ranging from 42.03?to 78.08?% at different contraction ratios. Additionally, based on a dimensionless analysis, an empirical model was proposed to predict the maximum scour depth downriver of a check dam. It indicated that the results calculated by the model exhibited good agreement with the experimental results.
机译:碎片流动经常导致财产造成破坏性损害,并可能在山区造成伤害或杀害居民。碎片流动谷的核对坝的构建被认为是减轻下游损害的有用策略。在本文中,提出了一种具有横向收缩的新型溢洪道结构,以在填满滤压后分配碎片流动。在实验中考虑了溢洪道的四种不同的横向收缩率,当碎屑流过溢洪道时,在研究碎片流动模式,冲刷特性和能量耗散速率的实验中考虑。结果表明,横向收缩显着影响了碎片流动Nappes的延伸。 Nappe的下降长度在η≤0.7(η≤的横向收缩率)大约比在η≤0°0.4的时间约为1.4Ω。在下游流动池中碎屑流动的碎屑和碎片流动的碰撞,摩擦和混合力散发了大部分碎屑流动动能,从42.03ΔT2403处达到不同的收缩比率。另外,基于无量纲分析,提出了一种经验模型来预测校验坝的最大冲刷深度下降镜。它表明,该模型计算的结果与实验结果表现出良好的一致性。

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