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Behavior of Marine Clay Subjected to Cyclic Loading with Sustained Shear Stress

机译:承受周期性剪应力的循环荷载作用下的海黏土行为

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Foundations of offshore structures are designed to withstand a combination of static and cyclic loads due to ocean waves. Wave action on offshore structures can cause a significant amount of cyclic horizontal and vertical forces to be transmitted to the soil through the foundation. In all these cases, these cyclic loads are considered to be superimposed over the initial sustained static stress due to the self-weight of structures. This study considers various factors that influence the development of deformation and pore water pressure in a typical cemented marine clay. These results show that the sustained static shear stress significantly influences the strength and deformation behavior of marine clay under cyclic loading. Up to a certain range of sustained static stress, there is an improvement in strength during cyclic loading and the cyclic strains are greatly reduced.
机译:离岸结构的基础旨在承受海浪引起的静态和周期性载荷的组合。在海上结构上的波浪作用会引起大量周期性的水平和垂直力通过地基传递到土壤。在所有这些情况下,由于结构的自重,这些循环载荷被认为是叠加在初始持续静应力上。这项研究考虑了影响典型胶合海洋粘土变形和孔隙水压力发展的各种因素。这些结果表明,持续的静态剪应力显着影响循环荷载作用下海相粘土的强度和变形行为。在一定的持续静态应力范围内,循环载荷期间的强度有所提高,并且循环应变大大降低。

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