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Interaction between topographic conditions and entrainment rate in numerical simulations of debris flow

机译:泥石流数值模拟中地形条件与夹带率之间的相互作用

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摘要

Debris flow simulations are useful for predicting the sediment supplied to watersheds from upstream areas. However, the topographic conditions upstream are more complicated than those downstream and the relationship between the topographic conditions and debris flow initiation is not well understood. This study compared the use of several entrainment rate equations in numerical simulations of debris flows to examine the effect of topographic conditions on the flow. One-dimensional numerical simulations were performed based on the shallow water equations and three entrainment rate equations were tested. These entrainment rate equations were based on the same idea that erosion and the deposition of debris flows occur via the difference between the equilibrium and current conditions of debris flows, while they differed in the expression of the concentration, channel angle, and sediment amount. The comparison was performed using a straight channel with various channel angles and a channel with a periodically undulating surface. The three entrainment rate equations gave different amounts of channel bed degradation and hydrographs for a straight channel with a channel angle greater than 21° when water was supplied from upstream at a steady rate. The difference was caused by the expression of the entrainment rate equations. For channels with little undulation, the numerical simulations gave results almost identical to those for straight channels with the same channel angle. However, for channels with large undulations, the hydrographs differed from those for straight channels with the same channel angle when the channel angle was less than 21°. Rapid erosion occurred and the hydrograph showed a significant peak, especially in cases using the entrainment equation expressed by channel angle. This was caused by the effects of the steep undulating sections, since the effect increased with the magnitude of the undulation, suggesting that a debris flow in an upstream area develops differently according to the topographic conditions. These results also inferred that numerical simulations of debris flow can differ depending on the spatial resolution of the simulation domain, as the resolution determines the reproducibility of the undulations.
机译:泥石流模拟对于预测从上游地区供应给集水区的沉积物很有用。然而,上游的地形条件比下游的条件复杂,并且地形条件与泥石流引发之间的关系还没有被很好地理解。这项研究比较了泥石流数值模拟中几个夹带率方程的使用,以检查地形条件对泥石流的影响。基于浅水方程进行了一维数值模拟,并测试了三个夹带率方程。这些夹带率方程式是基于相同的思想,即泥石流的侵蚀和沉积是通过泥石流的平衡状态和当前状态之间的差异发生的,而浓度,通道角度和沉积物的数量却有所不同。使用具有各种通道角度的直通道和具有周期性起伏表面的通道进行比较。当以稳定的速度从上游供水时,三个夹带速率方程式给出了不同角度的河道床退化和水道图,通道角大于21°。差异是由夹带率方程的表达式引起的。对于起伏很小的通道,数值模拟得出的结果几乎与具有相同通道角的直通道的结果相同。但是,对于起伏较大的河道,当航道角小于21°时,水文曲线不同于具有相同河道角的直航道。发生了快速侵蚀,水文图显示了一个明显的峰值,特别是在使用由通道角表示的夹带方程的情况下。这是由于陡峭起伏部分的影响所致,因为随着起伏幅度的增加,这种影响会增加,这表明上游地区的泥石流会根据地形条件而有所不同。这些结果还推断出,泥石流的数值模拟可能会有所不同,具体取决于模拟域的空间分辨率,因为分辨率决定了起伏的可再现性。

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