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首页> 外文期刊>Acta Geotechnica >Deformation analysis of reinforced soil retaining walls—simplistic versus sophisticated finite element analyses
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Deformation analysis of reinforced soil retaining walls—simplistic versus sophisticated finite element analyses

机译:加筋土挡土墙的变形分析-简单与复杂的有限元分析

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摘要

Over the last two decades, different kinds of modular block have been increasingly used in the geogrid-reinforced soil retaining walls. The simulation of such wall behavior, which involves interactions between different structural components and backfill soils, requires a rigorous numerical procedure. Finite element is usually a preferred method, but this procedure, especially the soil constitutive models, is of different degrees of sophistication. It is always an issue of how simple or sophisticated should an analysis be conducted in replicating the actual behavior. In this article, a full-scale test wall was used to validate simplistic and sophisticated finite element analyses. Different types of finite element and material models were used in the two kinds of analysis to differentiate the level of simplicity or sophistication. The results obtained from stress-deformation analyses are presented and compared. It is shown that for wall construction that involves static loading conditions, simplistic nonlinear elastic and sophisticated elastoplastic analyses produced close and acceptable results.
机译:在过去的二十年中,土工格栅加筋的挡土墙越来越多地使用了不同种类的模块式砌块。这种墙体行为的模拟涉及不同结构组件和回填土之间的相互作用,因此需要严格的数值程序。有限元通常是一种首选方法,但是此过程(尤其是土壤本构模型)具有不同的复杂程度。在复制实际行为时应进行多简单或复杂的分析始终是一个问题。在本文中,使用了全面的测试墙来验证简单和复杂的有限元分析。在两种分析中使用了不同类型的有限元和材料模型,以区分简单程度或复杂程度。提出并比较了从应力变形分析获得的结果。结果表明,对于涉及静态荷载条件的墙体结构,简单的非线性弹性和复杂的弹塑性分析产生了接近且可接受的结果。

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