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Influence of flow resistance stresses on debris flow runout

机译:流阻应力对泥石流跳动的影响

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The hydrodynamic modeling of debris flows is challenged by the complicated mechanism of debris flow and the large variability of material composition. Therefore, in the dynamic continuum modeling of debris flows it is essential to select suitable rheological and associated friction parameters. The quadratic rheological model is the most comprehensive approach because it considers the effects of viscous behavior, solid-particle resistance, turbulent properties, and friction characteristics of debris flow. Therefore, this study adopted the quadratic model as the governing flow resistance stress and analyzed the influence of various flow resistance stresses to evaluate the runout performance. The shallow-water equations with modified bottom friction were discretized and the developed model was validated against a dam break flow and a 'spreading of circular cone' problem. Then, to investigate the relationship between the flow resistance relations and the bottom shear stresses exerted by the cones and dry bed, the model was applied to runout in a rectangular domain with three cone-shaped obstacles. An actual field runout event that occurred in Korea in 2011 was replicated and the runout paths and flow patterns were analyzed according to the various resistance stresses. By considering both the extremely rapid runout velocity and the striking run-up height, the results obtained by the quadratic stress relation achieved the best performance. However, for the successful application of the quadratic approach, three parameters had to be adjusted with consideration to locality.
机译:泥石流的流体动力学模型受到泥石流复杂的机理和材料组成的巨大变化的挑战。因此,在泥石流的动态连续模型中,必须选择合适的流变参数和相关的摩擦参数。二次流变模型是最全面的方法,因为它考虑了粘性行为,固体颗粒阻力,湍流特性和泥石流摩擦特性的影响。因此,本研究采用二次模型作为控制流阻应力的方法,并分析了各种流阻应力的影响,以评估跳动性能。离散化了具有底部摩擦系数的浅水方程组,并针对大坝溃决流和“圆锥锥扩散”问题验证了所开发的模型。然后,为研究流阻关系与锥体和干床施加的底部剪切应力之间的关系,将模型应用于具有三个圆锥形障碍物的矩形区域的跳动。复制了2011年在韩国发生的实际田间跳动事件,并根据各种阻力应力分析了跳动路径和流型。通过同时考虑极快的跳动速度和冲击起伏高度,通过二次应力关系获得的结果达到了最佳性能。但是,为成功应用二次方法,必须根据位置调整三个参数。

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