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Instability Analysis of a Low-Angle Low-Expansive Soil Slope under Seasonal Wet-Dry Cycles and River-Level Variations

机译:季节性湿干循环下低角度低膨胀土坡的稳定性分析和河流变化

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There were a small amount of obvious offsets at the bearing of bridge piers built on an artificial gentle canal bank terrace and many tensile cracks visible at the surface of the mortar block stones covering the terrace soil in several years following construction. To determine these reasons, a comprehensive site investigation and a wide variety of tests were implemented, which included geophysical tests, in situ tests, laboratory tests, pile integrity detection, and numerical analysis with the finite element method (FEM). The results revealed that the soil of the low-angle slope was the potentially low-expansive clay soil. The reduction in soil shear strength deriving from seasonal wet-dry cycles and river-level variations led to the instability and failure of the low-angle low-expansive soil slope, which triggered the collapses of the soil slope and lots of fractures in the piles of the bridge foundation. The typical characteristics of the instability and failure of the low-angle low-expansive soil slope were tractional detachment and slow sliding.
机译:在人造柔和的运河岸边的桥墩轴承轴承中存在少量明显的偏移,并且在施工后几年覆盖露台土壤的砂浆块状石的表面上可见的许多拉伸裂缝。为了确定这些原因,实施了全面的现场调查和各种测试,包括地球物理测试,原位测试,实验室测试,桩完整性检测和具有有限元方法(FEM)的数值分析。结果表明,低角度斜率的土壤是潜在低膨胀的粘土土壤。季节性湿干循环和河流水平的土壤剪切强度的降低导致了低角度低膨胀的土坡的不稳定性和失效,这引发了桩中的土壤坡度和大量裂缝的折叠桥基础。低角度低膨胀土斜坡的不稳定性和失效的典型特性是牵引和滑动慢速滑动。

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