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Evaluation of effect of limited pore water pressure development on cyclic behavior of a nonplastic silt

机译:评估有限孔隙水压力发展对非塑性粉砂循环行为的影响

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In this study, an experimental procedure was adopted to evaluate cyclic behavior of silts of pore water pressure ratios less than 50%. A commercially available nonplastic silt was used to eliminate the effects of plasticity. All the specimens were isotropically consolidated under 100 kPa and later subjected to cyclic triaxial compression tests. In this regard, dependence of cyclic stress ratio (CSR), initial relative density (D-r) and cyclic axial strain (epsilon(sa)) on pore water pressure generation pattern - either at small or large deformation levels - were evaluated. It was inferred that, volume changes in silt due to the reconsolidation after cyclic loading with an induced pore water pressure ratio (R-u) less than 50% shows limited liquefaction. (C) 2019 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:在这项研究中,采用实验程序来评价孔隙水压力比小于50%的粉砂的循环行为。使用可商购的非塑料淤泥来消除可塑性的影响。所有样品在100 kPa下各向同性固结,然后进行循环三轴压缩试验。在这方面,评估了在较小或较大变形水平下,循环应力比(CSR),初始相对密度(D-r)和循环轴向应变(epsilon(sa))对孔隙水压力产生模式的依赖性。可以推断,在循环加载后,由于孔隙水压力比(R-u)小于50%,固结后淤泥的体积变化显示出有限的液化作用。 (C)2019年由Elsevier B.V.代表日本岩土工程学会制作和主持。

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