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Development of shear deformation due to the increase of pore pressure in a sandy model slope during rainfall

机译:降雨过程中沙质模型边坡孔隙压力增加引起的剪切变形发展

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摘要

To examine the relationship between the increase of the shear strain and the volumetric water content, the suction, and the pore pressure in a slope under rainfall, an analysis of the measurement of the soil-water and the deformation of the sandy model slope due to rainfall infiltration is conducted. At first, the surface displacement of the slope mostly occurs due to the increase of the pore pressure. The surface displacement increases slightly under unsaturated conditions at first and later increases significantly with the increase of the pore pressure. The surface displacement increases slightly immediately after the generation of the pore pressure at first, and the ratio of the increase of the surface displacement to the increase of the pore pressure subsequently grows larger. The shear strain in the soil layer of the model slope also increases to a small amount with the increase of the volumetric water content or the decrease of the suction in unsaturated conditions at first and later increases significantly with the increment of the positive pore pressure. The relationship between the shear strain and the positive pore pressure is hyperbolic, and the maximum pore pressure is greater at a deeper layer.
机译:为了研究降雨条件下边坡的剪切应变的增加与体积水含量,吸力和孔隙压力之间的关系,分析了土壤水的测量值和由于降雨引起的沙质模型边坡的变形。进行降雨入渗。首先,斜坡的表面位移主要是由于孔隙压力的增加而发生的。在不饱和条件下,表面位移首先略有增加,然后随着孔隙压力的增加而显着增加。刚开始产生孔隙压力后,表面位移立即略有增加,并且随后表面位移的增加与孔隙压力的增加的比率随后变大。随着体积水含量的增加,模型坡度的土层中的剪切应变也少量增加,或者在非饱和条件下,吸力的降低首先随着正孔隙压力的增加而显着增加。剪切应变和正孔隙压力之间的关系是双曲线的,并且最大孔隙压力在较深的层处更大。

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