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Prediction of the shear deformation of a sandy model slope generated by rainfall based on the monitoring of the shear strain and the pore pressure in the slope

机译:基于剪切应变监测及斜坡孔径的降雨砂模坡剪切变形预测

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摘要

It is important to predict shear deformation of a slope due to rainfall infiltration as the basis of the time prediction of an onset of a rainfall-induced landslide. Monitoring of deformations and soil-water conditions in a sandy model slope under artificial rainfall was performed to establish the prediction method for shear deformation of the slope due to rainfall infiltration. A prediction method for the relationship between shear strain and pore pressure was proposed based on the hyperbolic relationship between shear strain and pore pressure measured in the slope. Shear strain is predicted as a function of time before the failure of the slope based on the regression analyses of the shear strain pore pressure relationship and the time- pore pressure relationship. Prediction of the shear strain using data until a later time could better simulate the measured values. The predicted shear strain in the deeper layer fit the measured values better than that in the shallower layer. A prediction method for the time - surface displacement relationship was also proposed. The procedure for the prediction is the same as that for the prediction of the shear strain, except the surface displacement and the groundwater level replace the shear strain and the pore pressure, respectively, in the procedure. The prediction with data even at an early stage of the experiment could simulate the time variation of the surface displacement well. The proposed prediction method for the surface displacement produced better simulation results than the prediction method for the shear strain.
机译:重要的是预测由于降雨渗透引起的坡度的剪切变形是因为降雨诱导的滑坡发作的时间预测。进行了人工降雨下的砂型坡度的变形和土壤水条件的监测,建立了由于降雨渗透引起的坡度剪切变形预测方法。基于斜坡中剪切应变与孔隙压力与斜面之间的双曲线关系提出了一种预测方法。基于剪切应变孔压力关系的回归分析和时间孔隙压力关系,剪切应变被预测为斜率失败前的时间函数。使用数据预测剪切应变直到稍后的时间可以更好地模拟测量值。更深层中的预测剪切应变比在浅层中更好地拟合测量值。还提出了一种预测方法置换关系。预测的步骤与用于预测剪切应变的过程相同,除了表面位移和地下水位分别在该过程中替换剪切应变和孔隙压力。即使在实验的早期阶段也可以使用数据的预测可以模拟表面位移的时间变化。所提出的表面位移预测方法产生了比剪切应变的预测方法更好地模拟结果。

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