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Model tests for studying the failure mechanism of dry granular soil slopes

机译:研究干燥粒状土边坡破坏机理的模型试验

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The aim of this study is to investigate the behavior of sandy soil that has collapsed due to slope failures as well as to examine the influence area resulting from the failure. A model slope composed of three sections was employed to perform tests. The tests were conducted on various combinations of slope angle, slope height, slope surface condition, and the relative density of soil. Slope failure was induced by lifting up a retaining plate to cause the soil to collapse. Images of the sliding mass were taken by three cameras from different positions. The series of images clearly displayed the movement and development of granular flows. We then observed and measured the final profile of the soil and the shape of deposition area. The displacement of soil was measured by particle image velocimetry (PIV). Based on the measured displacement of flow, the front velocity of the flow was obtained. The slope angle and the internal friction angle of soil were found to be the most significant factors influencing the front velocity. Furthermore, a simplified equation based on Newton's law of motion is developed to predict the run-out of the flow. Comparison is then made between the measured and predicted run-out distances, and they are generally in good agreement.
机译:这项研究的目的是调查由于边坡破坏而塌陷的砂质土的行为,并研究破坏造成的影响区域。由三个部分组成的模型斜率用于执行测试。试验是在坡度角,坡度高度,坡面条件和土壤相对密度的各种组合下进行的。抬高固定板导致土壤倒塌,从而引起边坡破坏。滑动质量的图像是由三个摄像头从不同位置拍摄的。这一系列图像清楚地显示了颗粒流的运动和发展。然后,我们观察并测量了土壤的最终轮廓和沉积区域的形状。用粒子图像测速仪(PIV)测量土壤的位移。基于测得的流位移,获得流的前速度。土的倾斜角和内摩擦角是影响前速度的最重要因素。此外,开发了基于牛顿运动定律的简化方程,以预测流量的跳动。然后,对测得的跳动距离与预测的跳动距离进行比较,并且它们通常吻合良好。

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