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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Numerical Simulation of Deformation and Failure Behavior of Geosynthetic Reinforced Soil Bridge Abutments
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Numerical Simulation of Deformation and Failure Behavior of Geosynthetic Reinforced Soil Bridge Abutments

机译:土工加筋土桥台变形与破坏行为的数值模拟。

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This paper presents a numerical investigation of the deformation and failure behavior of geosynthetic reinforced soil (GRS) bridge abutments. The backfill soil was characterized using a nonlinear elastoplastic constitutive model that incorporates a hyperbolic stress-strain relationship with strain-softening behavior and the Mohr-Coulomb failure criterion. The geogrid reinforcement was characterized using a hyperbolic load-strain-time model. The abutments were numerically constructed in stages, including soil compaction effects, and then monotonically loaded in stages to failure. Simulation results indicate that a nonlinear reinforcement model is needed to characterize deformation behavior for high applied stress conditions. A parametric study was conducted to investigate the effects of reinforcement, backfill soil, and abutment geometry on abutment deformation and failure behavior. Results indicate that reinforcement vertical spacing, reinforcement stiffness, backfill soil friction angle, and lower GRS wall height are the most significant parameters. The shape of the failure surface is controlled primarily by abutment geometry and can be approximated as bilinear.
机译:本文对土工合成材料加筋土桥墩的变形和破坏行为进行了数值研究。使用非线性弹塑性本构模型对回填土进行表征,该模型将双曲线应力-应变关系与应变软化行为和Mohr-Coulomb破坏准则结合在一起。土工格栅的加固采用双曲线荷载-应变-时间模型进行表征。基台在数值上分阶段构造,包括压实作用,然后单调加载到破坏。仿真结果表明,需要一个非线性增强模型来表征高施加应力条件下的变形行为。进行了参数研究,以研究加筋,回填土和基台几何形状对基台变形和破坏行为的影响。结果表明,钢筋的垂直间距,钢筋的刚度,回填土的摩擦角和较低的GRS壁高是最重要的参数。破坏面的形状主要由基台几何形状控制,并且可以近似为双线性。

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