首页> 外文期刊>Journal of the Japanese Geotechnical Society >RESPONSE OF UNSATURATED SANDY SOILS UNDER CONSTANT SHEAR STRESS DRAINED CONDITION
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RESPONSE OF UNSATURATED SANDY SOILS UNDER CONSTANT SHEAR STRESS DRAINED CONDITION

机译:恒定剪切应力排水条件下非饱和砂土的响应

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摘要

In order to understand the mechanism and conditions leading to failure of sandy slopes due to the infiltration of rainwater, constant shear stress drained triaxial tests were conducted on three sets of soil samples—normal sand, gravelly sand and silty sand—taken from natural slopes where large-scale landslides have occurred in the past. Water was infiltrated from the bottom of an initially unsaturated soil specimen under constant shear stress drained condition until failure occurred. Such a loading pattern simulated the stress path followed by a soil element on a potential failure plane on a slope subjected to rainwater infiltration. The effects of various parameters reflecting the initial condition, such as relative density, principal stress ratio, degree of saturation and infiltration rate, on the development of deformation during the infiltration process were investigated. The test results confirmed that the development of pore water pressure within the soil is the main reason for the failure of slopes during heavy rainfall. The results obtained can serve as guidelines in developing warning systems against impending rainfall-induced slope failures.
机译:为了了解由于雨水的渗入而导致沙质边坡破坏的机理和条件,对从自然边坡采集的三组土壤样品(普通砂,砾砂和粉质砂)进行了恒剪应力排水三轴试验。过去曾发生过大规模的滑坡。在恒定的剪切应力排出条件下,水从最初的不饱和土壤样本的底部渗入,直到发生破坏。这种加载模式模拟了应力路径,其后是经过雨水渗透的斜坡上潜在破坏平面上的土壤元素。研究了反映初始条件的各种参数,如相对密度,主应力比,饱和度和渗透率,对渗透过程中变形的发展的影响。试验结果证实,土壤中孔隙水压力的发展是暴雨期间斜坡失稳的主要原因。获得的结果可作为开发针对即将发生的降雨引起的边坡破坏的预警系统的指南。

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