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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Reexamination of effect of plasticity on liquefaction resistance of low-plasticity fine-grained soils and its potential application
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Reexamination of effect of plasticity on liquefaction resistance of low-plasticity fine-grained soils and its potential application

机译:可塑性对低塑性细粒土抗液化性能的影响及其潜在应用

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The paper summarizes a compilation of existing cyclic experimental data on reconstituted and undisturbed specimens of low-plasticity fine-grained soils to assess liquefaction resistance. The authors normalized the data to reduce the effect of other relevant factors such as shear mode, density, effective confining stress and cyclic loading frequency. It is indicated that liquefaction resistance of the specimens reconstituted using slurry consolidation approach is lower than that of the undisturbed specimens. The liquefaction resistance for undisturbed specimens decreases with an increase in the plasticity index up to 4-5 and then increases with a further increase in plasticity index. A new correction factor K-PI to estimate the effect of plasticity index on cyclic resistance ratio is proposed for design purposes and added into the framework of liquefaction evaluation of claylike fine-grained soils with PI of 7-18 (change to 5-18, if ML-CL) on the base of the approach of Boulanger and Idriss. Because the effect of plasticity index on liquefaction resistance is slight when the plasticity index is < 7, it is suggested that the liquefaction evaluation of sandlike fine-grained soils with PI of 0-7 (changed to 0-5, if ML-CL) follows the framework of simplified procedures using SPT and CPT data.
机译:本文总结了现有的循环实验数据汇编,这些数据是在低塑性细粒土的重构和未扰动标本上评估耐液化性的。作者对数据进行了归一化处理,以减少其他相关因素的影响,例如剪切模式,密度,有效围压和循环加载频率。结果表明,采用淤浆固结法重构的试样的抗液化性低于未扰动的试样。未受破坏的试样的抗液化性随可塑性指数的增加而增加,直至4-5,然后随可塑性指数的进一步增加而增加。出于设计目的,提出了一种新的校正因子K-PI来估算可塑性指数对循环阻力比的影响,并将其添加到PI值为7-18(更改为5-18, (如果是ML-CL),则以Boulanger和Idriss的方法为基础。当可塑性指数<7时,由于可塑性指数对抗液化性的影响很小,因此建议对PI为0-7的砂状细粒土进行液化评估(如果为ML-CL,则改为0-5)。遵循使用SPT和CPT数据的简化程序框架。

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