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Numerical investigation of flash flood dynamics due to cascading failures of natural landslide dams

机译:自然滑坡坝级联故障引起的闪光动力学的数值调查

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A series of natural landslide dams commonly form in a river valley in mountainous areas. Their failures are frequently triggered by intense rainfall, which may result in severe flash flooding or debris flow in a short period. It is important for risk mitigation to develop greater evidence-based understanding of flood dynamics due to cascading dam failures. Based on detailed hydro-morphodynamic modeling of various scenarios, this study systematically evaluates the formation and evolution of flash floods due to a cascading failure of natural landslide dams. The hydro-morphodynamic model has been shown to be capable of simulating shock-captured flows and resultant morphological changes. In this study, we first calibrate the dynamic model with dedicated experimental data, and then apply it to simulate a variety of designed flash flood scenarios caused by cascading dam failures. Moreover, process-based flood dynamics and their evolution are explored in detail. Results indicate that cascading dam failures in a sloping channel cause an overall amplification of flash flood dynamics in the flow direction, but fluctuation of key hydraulic parameters occurs around each dam. Also, bigger landslide dams prevent upstream flood propagation better, but the blockage of the flows raises the potential flow energy. This implies a higher potential hazard risk in case of 'sudden-onset' failure of the dam. Moreover, the shape characteristic of a channel (straight or with bends) influences the evolution of the flash flood along the sloping channel. The findings enhance the understanding of the formation and evolution mechanisms of flash floods due to cascading failures of natural landslide dams, and hence are beneficial for assessing hazard risk and developing
机译:一系列自然滑坡大坝通常在山区的河流山谷中形成。他们的失败经常被激烈的降雨触发,这可能导致短时间内的严重闪蒸或碎片流动。由于级联大坝故障,对风险缓解的风险减缓很重要。基于各种情景的详细水晶态建模,本研究系统地评估了由于天然滑坡坝的级联失败而产生的闪光洪水的形成和演变。已经证明了水流形态动力学模型能够模拟冲击捕获的流量和结果形态变化。在本研究中,我们首先使用专用的实验数据校准动态模型,然后应用它以模拟级联坝故障引起的各种设计的闪光方案。此外,详细探讨了基于过程的洪水动态及其进化。结果表明,倾斜通道中的级联坝故障导致流动方向上的闪光发动机总体放大,但是在每个大坝周围发生关键液压参数的波动。此外,更大的滑坡坝防止上游洪泛传播更好,但流量的堵塞提高了潜在的流量。这意味着大坝“突然发作”失败的情况下较高的潜在危险风险。此外,通道(直的或弯曲)的形状特性影响沿倾斜通道的闪蒸的演变。这些调查结果提高了对自然滑坡坝级联失败引起的闪蒸的形成和演化机制的理解,因此有利于评估危险风险和发展

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