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A study of the debris flow activity on the one-stepped channel slope

机译:阶梯式河道边坡泥石流活动研究

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The purpose of this study is to evaluate the behaviour and mechanism of debris flow on various slopes through numerical simulation. The numerical simulation was performed using the Finite Difference Element Method based on the equation of mass conservation and momentum conservation. In order to measure the behaviour of the debris flow, the debris flow of the straight rectangular channel slope and that of the one-stepped channel slope were compared. Firstly the water flow discharge, the water flow depth, and the sediment volume concentration at the slope downstream of the channel, depending on the different inflow water flow discharges at the upstream of the channel, were analyzed. The smaller the supply from the upstream of the channel, the water flow discharge and the water flow depth surged only at the point after the debris flow reached the downstream of the channel, and showed a tendency to decrease thereon after. On the other hand, when the supply at the upstream of the channel increased, the curve of the water flow discharge and the water flow depth was unsteadily high. Through the Root Mean Square ratio (RMS) comparison, the water flow discharge and water flow depth of the one-stepped channel slope was lower than that of the straight rectangular channel slope. Secondly, the water flow discharge, water flow depth, and sediment volume concentration depending on the change in the slope of the one-stepped channel slope were analyzed. The larger the slope, the larger the fluctuation in amplitude of the curve and this resulted in a higher water flow discharge distribution as well as in a wider fluctuation bandwidth. In the results of the study at each point, in the case of the straight rectangular channel, the water flow discharge and depth increased as it went downstream. This is because more erosion than deposition occurs when debris flow occurs at the upstream of the channel.
机译:这项研究的目的是通过数值模拟评估泥石流在不同斜坡上的行为和机理。基于质量守恒和动量守恒的方程,使用有限差分元法进行了数值模拟。为了测量泥石流的行为,比较了矩形直通道斜面和单步通道斜面的泥石流。首先,根据通道上游的入流水流量的不同,分析了通道下游坡面的水流量,水深和沉积物浓度。来自通道上游的供给越小,仅在泥石流到达通道下游之后的点,水流排放和水深才激增,并且此后呈现出下降的趋势。另一方面,当在通道上游的供应增加时,水流量排放和水流量的曲线不稳定地变高。通过均方根比(RMS)的比较,一阶河道的水流量和水深比直角河道的水流量低。其次,分析了取决于一阶通道坡度的坡度变化的水流量,水深和沉积物浓度。斜率越大,曲线幅度的波动越大,这导致较高的水流量排放分布以及较大的波动带宽。在每个点的研究结果中,在直矩形通道的情况下,水流的流量和深度随着其向下游的增加而增加。这是因为,当在通道的上游发生碎屑流时,发生的腐蚀多于沉积。

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