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Model test on the entrainment phenomenon and energy conversion mechanism of flow-like landslides

机译:模型试验对流动山体滑坡的夹带现象和能量转换机制

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A reduced-scale physical model test with a scale of 1:2000 is designed based on the Wenjia Gully landslides. By changing the volume and kinetic energy of the sliding mass, we find that the material grading and bed-sediment thickness exert an important effect on the movement process of the landslide. To investigate the dependence of the entrainment on the grade of the sliding material and bed-sediment thickness, a series of comparison experiments with sliding masses of different grades and loose sediment bed materials of different thickness values are conducted. Furthermore, a high-speed camera is used to record the runout process. The experimental results indicate that because of the entrainment effect, the erosion depth of the substrate increases when the grade of the sliding mass increases. In addition, different characters appear in the erosion depth, volume of the accumulated area and entrainment length with the increase in bed-sediment thickness. Furthermore, the entrainment depth may increase when the bed-sediment thickness increases. The velocity of the sliding mass is reduced with the increase in basement thickness. Finally, based on the analysis of landslides and the previous experimental results, the energy conversion can be calculated to analyze the process of substrate entrainment for each sliding phase.
机译:基于文家沟壑山体滑坡设计的降低的物理模型试验,尺寸为1:2000。通过改变滑动质量的音量和动力能,发现材料分级和床沉积物厚度对滑坡的运动过程产生了重要影响。为了研究夹带对滑动材料和床沉积物厚度等级的依赖性,对不同厚度值的不同等级和松散的沉积物材料进行了一系列比较实验。此外,高速相机用于记录跳行过程。实验结果表明,由于夹带效果,当滑动质量的等级增加时,基板的腐蚀深度增加。此外,不同的角色出现在侵蚀深度,积聚区域的体积和夹带长度随着床沉积物厚度的增加而增加。此外,当床沉积物厚度增加时,夹带深度可能会增加。随着地下室厚度的增加,滑动质量的速度降低。最后,基于对山体滑坡和先前的实验结果的分析,可以计算能量转换以分析每个滑动阶段的衬底夹带过程。

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