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首页> 外文期刊>International Journal for Numerical and Analytical Methods in Geomechanics >Liquefaction and cyclic mobility model for saturated granular media
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Liquefaction and cyclic mobility model for saturated granular media

机译:饱和颗粒介质的液化和循环迁移率模型

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摘要

A new constitutive law for the behaviour of undrained sand subjected to dynamic loading is presented. The proposed model works for small and large strain ranges and incorporates contractive and dilative properties of the sand into the unified numerical scheme. These features allow to correctly predict liquefaction and cyclic mobility phenomena for different initial relative densities of the soil. The model has been calibrated as an element test, by using cyclic simple shear data reported in the literature. For the contractive sand behaviour a well-known endochronic densification model has been used, whereas a plastic model with a new non-associative flow rule is applied when the sand tends to dilate. Both dilatancy and flow rule are based on a new state parameter, associated to the stiffness degradation of the material as the shaking goes on. Also, the function that represents the rearrangement memory of the soil takes a zero value when the material dilates, in order to easily model the change in the internal structure. Proceeding along this kind of approach, liquefaction and cyclic mobility are modelled with the same constitutive law, within the framework of a bi-dimensional FEM coupled algorithm developed in the paper. For calibration purposes, the behaviour of the soil in a cyclic simple shear test has been simulated, in order to estimate the influence of permeability, frequency of loading, and homogeneity of the shear stress field on the laboratory data.
机译:提出了一种新的本构关系的不排水砂在动态荷载作用下的行为。所提出的模型适用于较小和较大的应变范围,并将砂土的收缩和膨胀特性纳入统一的数值方案。这些特征允许针对土壤的不同初始相对密度正确预测液化和循环迁移现象。通过使用文献中报道的循环简单剪切数据,该模型已作为元素测试进行了校准。对于收缩性砂的行为,已使用了众所周知的内部时间致密化模型,而当砂易于膨胀时,将应用具有新的非缔合流动规则的塑性模型。膨胀率和流动规则均基于新的状态参数,该状态参数与随着振动的进行而使材料的刚度降低有关。同样,当材料膨胀时,表示土壤重排记忆的函数取零值,以便轻松模拟内部结构的变化。在这种方法的基础上,在本文开发的二维有限元耦合算法的框架内,以相同的本构定律对液化和循环迁移率进行建模。为了进行校准,模拟了循环简单剪切试验中土壤的行为,以评估渗透率,加载频率和剪切应力场的均匀性对实验室数据的影响。

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