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Effects of induced anisotropy on multiple liquefaction properties of sand with initial static shear

机译:诱导各向异性对初始静态剪切作用下砂土液化特性的影响

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The multiple liquefaction phenomenon has been attracting the attention of more and more researchers and engineers since the 2010-2011 Christchurch Earthquakes and the 2011 Great East Japan Earthquake. However, little has been known about the multiple liquefaction properties of sloped grounds. In this study, therefore, multiple liquefaction tests that consider the initial static shear stress, which have never been conducted before, were carried out with a special designed apparatus, the stacked-ring shear apparatus. A series of multiple liquefaction tests revealed that induced anisotropy, which is weak against the loading opposite to the direction of the initial static shear stress, was produced by the liquefaction of a sloped ground. As a result, a significant decrease in the liquefaction resistance during the next cyclic of shearing occurred. The indicators which influenced the magnitude of anisotropy were also discussed from the perspective of the reconsolidation procedures, the magnitude of initial static shear stress, and the type of ending of the previous liquefaction stage. In addition, it turned out that in the multiple liquefaction test with a larger initial static shear stress, the re-liquefaction resistance was higher because the shear stress opposite to the direction of the initial static shear stress, causing large negative dilatancy due to anisotropy, was smaller in that test. (C) 2019 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:自2010-2011年克赖斯特彻奇地震和2011年东日本大地震以来,多重液化现象已引起越来越多的研究人员和工程师的关注。但是,对于倾斜地面的多重液化特性知之甚少。因此,在这项研究中,使用特殊设计的设备,即叠环剪切设备,进行了多次考虑初始静态剪切应力的液化试验,这些试验从未进行过。一系列的多次液化试验表明,由倾斜的地面液化产生了诱导的各向异性,该各向异性对与初始静态剪应力方向相反的载荷微弱。结果,在下一个剪切循环期间发生了抗液化性的显着降低。还从重新固结程序,初始静态剪应力的大小以及先前液化阶段的结束类型的角度讨论了影响各向异性大小的指标。另外,结果表明,在具有较大初始静态剪切应力的多次液化试验中,由于与各向异性相反的剪切应力会导致较大的负剪胀性,因此,抗再液化性较高,在那个测试中较小。 (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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