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Construction of 3D Creep Model of Landslide Slip-Surface Soil and Secondary Development Based on FLAC3D

机译:基于FLAC3D的滑坡滑落土和二次开发3D蠕变模型的构建

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Landslide deformations have predictable rheological properties, but, when using finite element analysis, only the elastoplastic constitutive equation of soil is considered. Soil creep properties are not considered, often rendering inaccurate results. In this paper, the three-dimensional state equation of the extended Burgers model is derived based on the creep test results of slip-surface soil and the Mohr–Coulomb elastoplastic model. This paper uses FLAC3D, a finite-element software platform, for secondary development and to verify the accuracy of the model and program. A strength reduction method that considers rheological properties is proposed. A numerical simulation of rheological properties is conducted on a landslide and compared with conventional viscoelastic constitutive results. It can be found that the landslide displacement calculation is significantly smaller when the rheological properties are not considered. The stability coefficient of the landslide calculated by the strength reduction method, considering the rheological properties, is smaller than the coefficient calculated without considering rheological properties.
机译:滑坡变形具有可预测的流变性能,但是,当使用有限元分析时,仅考虑土壤的弹塑性本构方程。不考虑土壤蠕变性质,通常呈现不准确的结果。在本文中,基于滑动表面土壤和MoHR-Coulomb弹塑性模型的蠕变试验结果导出延伸汉堡模型的三维状态方程。本文采用FLAC3D,有限元软件平台,用于二次开发,验证模型和程序的准确性。提出了一种考虑流变性质的强度还原方法。流变性质的数值模拟在滑坡上进行,并与常规的粘弹性本构成结果进行比较。可以发现,当不考虑流变性质时,滑坡位移计算明显更小。考虑流变性质的强度还原方法计算的滑坡的稳定性系数小于在不考虑流变性质的情况下计算的系数。

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