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Effect of Soil Relative Density and the Inclination Angle on the Impact Force from a Granular Sliding Mass on a Rigid Obstruction

机译:相对密度和倾斜角度对刚性障碍物上颗粒状滑动块冲击力的影响

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The impact force from a granular sliding mass on a rigid obstruction can be used to gain insights into the granular flow; however, such data is remarkably scarce in the literature. In this study, a two-dimensional soil flume was constructed and utilized to measure the impact force from a granular sliding mass on an obstruction instrumented with dynamic load cells in order to systematically study the effects of different factors on the impact force. In this paper, the effects of initial soil density and inclination angle on the impact force were investigated. Results from these experiments showed that in gentle slopes (i.e., low inclination angle) as the initial density increases the impact force decreases. However, in steep slopes (i.e., high inclination angle) when densely packed granular mass flows downslope with high velocity, the flow is similar to the sliding of a less-deformable block and the impact force increases as the initial density increases.
机译:颗粒状滑动块对刚性障碍物的冲击力可用于深入了解颗粒状流动。但是,这些数据在文献中非常少。在这项研究中,构建了二维土壤水槽,并利用它测量了由颗粒状滑动块在装有动态测力计的障碍物上产生的冲击力,以便系统地研究不同因素对冲击力的影响。本文研究了初始土壤密度和倾角对冲击力的影响。这些实验的结果表明,在平缓的坡度(即低倾斜角)中,随着初始密度的增加,冲击力减小。但是,在陡峭的斜坡(即高倾角)中,当密集堆积的颗粒状物质以高速向下斜坡流动时,其流动类似于变形程度较小的块的滑动,并且冲击力随着初始密度的增加而增加。

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