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Numerical modelling of two full-scale reinforced soil wrapped-face walls

机译:两层全尺寸加筋包裹面墙的数值模拟

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The paper reports the details of numerical models used to predict the performance of two 3.6 m-high well-instrumented wrapped-face walls. The walls were nominally identical except that the reinforcement material in one wall was a steel welded wire mesh and in the other a biaxial polypropylene geogrid. The backfill soil was modelled using both linear and nonlinear elastic-plastic constitutive models. A general hyperbolic (nonlinear) axial load-strain-time model was used for the reinforcement. The numerical results show good agreement with measured performance features for the welded wire mesh wrapped-face wall. Agreement between numerical predictions of facing displacements and maximum reinforcement loads was less accurate for the very flexible geogrid wrapped-face wall. The discrepancies are believed to be related to the unusually flexible wrapped face used in the geogrid wall construction. Numerically predicted and measured maximum reinforcement loads are compared to loads using the AASHTO reinforcement strength-based design approach (Simplified Method) and the Simplified Stiffness Method which is an empirical reinforcement stiffness-based method. The paper provides physical test data that can be used to benchmark other numerical models, highlights lessons learned during the development of the models, and identifies reasonable expectations for numerical model accuracy for models of similar complexity used to simulate the performance of mechanically stabilized earth (MSE) wall structures under operational conditions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:该论文报告了用于预测两块3.6 m高,仪器齐全的包裹面墙的性能的数值模型的详细信息。墙壁名义上是相同的,除了其中一处的加强材料是钢丝焊接网,另一处是双轴聚丙烯土工格栅。使用线性和非线性弹塑性本构模型对回填土进行建模。普通的双曲(非线性)轴向载荷-应变-时间模型用于加固。数值结果与电焊网包裹面墙的测量性能特征吻合良好。对于非常灵活的土工格栅包裹面墙,面对位移的数值预测与最大钢筋载荷之间的一致性不太准确。该差异被认为与土工格栅墙结构中使用的异常柔软的包裹面有关。使用AASHTO基于强度的设计方法(简化方法)和基于刚度经验的简化刚度方法,将数值预测和测得的最大增强载荷与载荷进行比较。本文提供了可用于对其他数值模型进行基准测试的物理测试数据,重点介绍了在模型开发过程中吸取的经验教训,并确定了用于模拟机械稳定土(MSE)性能的相似复杂性模型对数值模型准确性的合理预期。 )在运行条件下的墙体结构。 (C)2017 Elsevier Ltd.保留所有权利。

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