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Variation of collapse potential and stiffness degradation with matric suction of compacted unsaturated cohesive soil

机译:压实的非饱和粘性土的基质吸力导致塌陷势和刚度退化的变化

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摘要

Collapse of soil skeleton due to variation in its loading and boundary conditions impacts the strength and stability of soil in its unsaturated state. The present study is focused on the influence of matric suction on collapsible behaviour and stiffness degradation of compacted unsaturated cohesive soil. Collapse characteristic of unsaturated soil is assessed under sudden inundation and varying vertical stress application. A series of dynamic triaxial, double oedometer and filter paper tests were conducted on unsaturated Ahmedabad cohesive soil under as-compacted conditions at varying dry density and water content to determine cyclic degradation index (δ), collapse potential and matric suction [u_a - u_w), respectively. Significant influence of matric suction was observed on collapse potential and stiffness degradation of unsaturated cohesive soil. Larger collapse potential at higher matric suction clarified the meta-stable state of compacted unsaturated cohesive soil under dry conditions. Cyclic degradation index (δ) with number of loading cycles was found to be decreasing with increase in matric suction representing brittle nature of soil possessing higher matric suction signifying soil skeleton to be highly volatile and unsafe under dynamic loading conditions.
机译:由于其荷载和边界条件的变化而导致的土壤骨架塌陷会影响其非饱和状态下土壤的强度和稳定性。目前的研究集中在基质吸力对压实的不饱和粘性土的可塌陷性和刚度退化的影响上。在突然淹没和垂直应力变化的情况下评估了非饱和土的塌陷特征。在压缩的条件下,在不同的干密度和含水量下,对非饱和艾哈迈达巴德粘性土壤进行了一系列动态三轴,双里程计和滤纸测试,以确定循环降解指数(δ),坍塌势和基质吸力[u_a-u_w] , 分别。观察到基质吸力对非饱和粘性土的崩塌势和刚度退化的显着影响。在较高的基质吸力下较大的塌陷势能澄清了干燥条件下压实的不饱和粘性土的亚稳态。研究发现,随着基质吸力的增加,循环降解指数(δ)随基质吸力的增加而降低,这代表具有较高基质吸力的土壤的脆性,表明土壤骨架在动态载荷条件下易挥发且不安全。

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