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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Behavior of an Atypical Embankment on Soft Soil: Field Observations and Numerical Simulation
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Behavior of an Atypical Embankment on Soft Soil: Field Observations and Numerical Simulation

机译:非典型路堤在软土上的性状:现场观察与数值模拟

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This paper compares the behavior of an embankment with nonsymmetric geometry built on soft soil with that predicted numerically using four elastoplastic soil models. Two of these models are based on isotropic conditions (Modified Cam-Clay on its own or in association with Von Mises) and two other are derived from anisotropic conditions (Melanie on its own or conjugated with Mohr Coulomb). The performance of the models, whose parameters are derived from experimental data, is checked against triaxial tests results. For the embankment, the measured and computed displacements and excess pore pressure are compared, with the isotropic models performing best. The maximum horizontal displacements versus settlements, the change in excess pore pressure versus vertical stress, the extent of the yield domain and the contours of the effective vertical and horizontal stress increments are also examined. The numerical results are explained based on the characteristics of the numerical models, namely the size and shape of the yield surface. The embankment, despite its nonsymmetric geometry, exhibits some similarities with typical behavior.
机译:本文比较了在软土上具有非对称几何形状的路堤的行为与使用四种弹塑性土模型进行数值预测的结果。其中两个模型基于各向同性条件(修改的Cam-Clay本身或与冯·米塞斯(Von Mises)结合使用),另外两个模型则来自各向异性条件(Melanie自身或与Mohr Coulomb共轭)。根据三轴测试结果检查模型的性能,这些模型的参数来自实验数据。对于路堤,比较了测得的和计算的位移以及过大的孔隙压力,各向同性模型的效果最佳。还检查了最大水平位移与沉降,过大孔隙压力随垂直应力的变化,屈服域的程度以及有效的垂直和水平应力增量的轮廓。基于数值模型的特征(即屈服面的大小和形状)解释了数值结果。尽管路堤的几何形状不对称,但与典型路况有一些相似之处。

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