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Cyclic behaviour of an unsaturated silty soil subjected to hydro-mechanical damage

机译:不饱和粉状土壤对水电机械损伤的循环行为

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The dynamic behaviour of unsaturated soil subjected to cyclic loading is considered using two stress state variables, net normal stress and matric suction. Though the influence of excess pore-water pressures in fully saturated soils has been investigated through experimental works for decades, it is significant in practice for unsaturated soil dynamic behaviour to be compared to saturated soil dynamic strength-deformation properties. Matric suction can be described as a scalar, which is useful in establishing safety factors and in mathematical simulations. This study focused on the dynamic behaviour of unsaturated soil leading to liquefaction failure. Solving practical problems requires considering the properties of unsaturated soil subjected to creep before introducing dynamic loading effects. This testing program consisted of a creep test and a cyclic loading test. Notably, a low suction range of soil structure is closely related to large deformations or leads to failure impacting the resistance of soil particle cohesion, including the macro-micro structure. Creep force was applied under lateral confining pressure, and suction measurements are indicating a gradual growth of excess pore-water pressure. Moreover, this study considered a dynamic triaxial compression test under the undrained condition for unsaturated soil with suction and creep history.
机译:使用两个应力状态变量,净正常应力和测定型旋转载荷对不饱和土壤进行的不饱和土壤的动态行为。虽然已经通过实验工程研究了全饱和土壤中过度饱和土壤中的过度孔隙压力的影响,但是对于不饱和土的动态行为的实践是显着的,待与饱和土动态强度变形性能进行比较。 Matric抽吸可以被描述为标量,可用于建立安全因素和数学模拟。本研究专注于不饱和土的动态行为,导致液化失效。解决实际问题需要考虑在引入动态负载效应之前,考虑在蠕变进行蠕变的不饱和土的性质。该测试程序包括蠕变测试和循环加载测试。值得注意的是,低吸入范围的土壤结构与大变形密切相关,或导致影响土壤颗粒凝聚力的阻力,包括宏观微观结构。在横向狭窄压力下施加蠕变力,吸入测量表明孔隙水压力的逐渐增长。此外,该研究认为,在不饱和土的不饱和土中的动态三轴压缩试验,具有抽吸和蠕变历史。

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