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Simulation of the erosion process of landslide dams due to overtopping considering variations in soil erodibility along depth

机译:考虑沿着深度土壤易用性变化的旧滑坡损蚀过程的仿真

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A landslide dam typically comprises freshly deposited heterogeneous, unconsolidated or poorly consolidated earth materials and is vulnerable to overtopping breaching. A physically-based breach model is presented to simulate the breaching process of such landslide dams. The new model can predict the breach evolution, the erosion rate, and the outflow hydrograph. A spreadsheet is developed to numerically implement the model. The erosion processes of Tangjiashan Landslide Dam and Xiaogangjian Landslide Dam induced by the 2008 Wenchuan earthquake are analyzed using the new model. The erodibility of the two landslide dams varies significantly along depth. The predicted key breaching parameters (i.e., final breach size, failure time, and peak outflow rate) considering the variations in the soil erodibility along depth agree well with the observed values. Further sensitivity analysis indicates that the soil erodibility affects the breaching process of a landslide dam significantly. Higher soil erodibility will lead to a larger breach, a shorter failure time and a larger peak outflow rate. The erosion rate of the breach channel in the depth direction decreases with increasing erosion resistance of the landslide deposits. In the two case studies, the key breaching parameters cannot be properly predicted if constant soil erodibility parameters along depth are assumed.
机译:滑坡大坝通常包括新鲜沉积的异质,未溶胀或巩固的地球材料不良,并且容易受到突出的侵犯。提出了一种物理基突发模型以模拟这种滑坡坝的突破过程。新模型可以预测突发进化,侵蚀率和流出式流程。开发了一种电子表格以在数值上实现模型。采用新模型分析了2008年汶川地震诱导的唐家山滑坡大坝和小刚剑岩石水坝的侵蚀过程。两个滑坡坝的蚀刻性沿着深度显着变化。考虑到沿着观察到的值良好地对考虑到沿着深度的土壤易用的变化的预测突破参数(即,最终违规尺寸,故障时间和峰流出率)。进一步的敏感性分析表明土壤腐蚀会显着影响滑坡坝的突破过程。较高的土壤蚀刻性将导致更大的违规,更短的故障时间和更大的峰流出速率。随着山体滑坡沉积物的耐腐蚀性,突破通道在深度方向上的侵蚀率降低。在两个案例研究中,如果假设沿着深度的恒定土壤侵蚀参数,则不能适当地预测键突破参数。

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