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Shear wave velocity-based evaluation of liquefaction resistance for calcareous sands of different origin

机译:基于剪切波速度的不同来源石灰质砂土抗液化性评估

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This paper presents the results of an experimental research carried out in laboratory aimed at establishing a relationship between cyclic liquefaction resistance (CRRfield) and corrected shear wave velocity (V-S1) of carbonate sands. Two carbonate skeletal sands, namely Quiou and Dubai, were investigated together with a carbonate non-skeletal sand from Kenya. The programme included also tests on two silica sands prepared and tested in similar conditions for comparison purposes. The research was based on undrained cyclic simple shear tests and bender element tests in triaxial cell performed on reconstituted specimens of sand at different initial density and stress states. The results obtained highlight that data points for carbonate sands are all located to the right of the currently used cyclic liquefaction resistance vs. shear wave velocity curves suggested for silica sands, implying that the latter curves should be considered non-conservative when applied to carbonate crushable sands. An insight into the effect of the initial effective vertical stress on liquefaction susceptibility of carbonate sands was presented and a stress normalization procedure was also proposed.
机译:本文介绍了在实验室进行的一项实验研究的结果,旨在建立抗循环液化性(CRRfield)与碳酸盐砂的修正剪切波速度(V-S1)之间的关系。研究了两种碳酸盐骨架砂,即基乌和迪拜,以及肯尼亚的一种碳酸盐非骨架砂。该程序还包括在两种石英砂上进行测试,并在相似条件下进行测试以进行比较。该研究基于不排水的循环简单剪切试验和三轴单元中的弯曲元件试验,该试验在不同的初始密度和应力状态下对再生的砂土样品进行。获得的结果表明,碳酸盐砂的数据点都位于当前使用的硅土建议的循环抗液化性与剪切波速度曲线的右侧,这意味着当将这些曲线应用于可破碎的碳酸盐时,应将其视为非保守的。金沙。提出了关于初始有效垂直应力对碳酸盐砂液化敏感性的影响的见解,并提出了应力归一化程序。

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