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首页> 外文期刊>Soils and foundations >DEVELOPMENT OF DISPLACEMENT-SOFTENING MODEL FOR INTERFACE SHEAR BEHAVIOR BETWEEN GEOSYNTHETICS
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DEVELOPMENT OF DISPLACEMENT-SOFTENING MODEL FOR INTERFACE SHEAR BEHAVIOR BETWEEN GEOSYNTHETICS

机译:土工合成材料界面剪切行为的位移软化模型开发

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This paper presents two kinds of constitutive model applicable for geosynthetic interfaces, namely a combined model (MODEL 1) and DSC model (MODEL 2). In order to verify the performance of the two models, back-predictions were carried out on smooth geomembrane (S-GM) and textured geomembrane (T-GM) interfaces with geotextile (GT), namely S-GM/GT and T-GM/GT interface using the parameters obtained from test results. For the combined model (MODEL 1), the total stress field is divided into two regions, i.e. pre-peak and post-peak region, to take into account the displacement-softening effect on the interface shear behavior. The DSC model (MODEL 2) was also considered to model the interface shear behavior between geosynthetics. This model is comprised of two reference states, namely the relative intact (RI) and the fully adjusted (FA) state, and one function, namely the disturbance function. Though the comparisons between measured data and back-prediction results for MODEL 1 and MODEL 2 (DSC model) showed good agreements with each other, MODEL 1 has a critical limitation related to the boundary value problem as it is inconvenient to implement this model into FEM. Finally, DSC model (MODEL 2) was suggested as an appropriate model for simulating large-displacement shear behaviors with the characteristics of plasticity because the DSC model has been widely implemented in FEM process by many researchers.
机译:本文提出了适用于土工合成材料界面的两种本构模型,即组合模型(模型1)和DSC模型(模型2)。为了验证这两种模型的性能,对光滑土工膜(S-GM)和带纹理土工膜(T-GM)与土工布(GT)的界面进行了反向预测,即S-GM / GT和T-GM / GT接口使用从测试结果中获得的参数。对于组合模型(模型1),考虑到位移软化对界面剪切行为的影响,总应力场分为两个区域,即峰前和峰后区域。还考虑使用DSC模型(模型2)对土工合成材料之间的界面剪切行为进行建模。该模型包括两个参考状态,即相对完整(RI)和完全调整(FA)状态,以及一个函数,即干扰函数。尽管模型1和模型2(DSC模型)的实测数据与反向预测结果之间的比较显示出良好的一致性,但是模型1与边值问题有关,因此存在一个关键局限性,因为将模型应用到FEM中不方便。最后,由于许多研究者已经在有限元方法中广泛采用了DSC模型,因此建议将DSC模型(模型2)作为模拟具有塑性特征的大位移剪切行为的合适模型。

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