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Influence of choice of FLAC and PLAXIS interface models on reinforced soil-structure interactions

机译:FLAC和PLAXIS界面模型选择对加筋土-结构相互作用的影响

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The choice of structure element to simulate soil reinforcement and soil-structure interaction details for numerical modelling of mechanically stabilized earth (MSE) walls can have a significant influence on numerical outcomes. Program FLAC (finite difference method) offers three different options (beam, cable and strip element) to model the reinforcement and program PLAXIS (finite element method) has two (beam and geogrid element). Both programs use different models and properties to simulate the mechanical behaviour of the interface between dissimilar materials. The paper describes the details of the linear elastic Mohr-Coulomb interface model available in the two software packages to model material interaction and how to select model parameters to give the same numerical outcomes. The numerical results quantitatively demonstrate the conditions that give good agreement between the two programs for the same steel strip reinforced soil-structure problem and the situations where they do not. For example, the paper demonstrates that results can be very different depending on the type of structure element used to model horizontal reinforcement layers that are discontinuous in the plane-strain direction. (C) 2014 Elsevier Ltd. All rights reserved.
机译:选择用于模拟土壤加固的结构单元和用于机械稳定土(MSE)壁数值模拟的土-结构相互作用细节可能会对数值结果产生重大影响。程序FLAC(有限差分方法)提供了三种不同的选项(梁,电缆和条形单元)来模拟钢筋,而程序PLAXIS(有限元方法)具有两个选项(梁和土工格栅单元)。这两个程序使用不同的模型和属性来模拟不同材料之间的界面的机械行为。本文介绍了在两个软件包中可用的线性弹性Mohr-Coulomb界面弹性模型来建模材料相互作用的细节,以及如何选择模型参数以给出相同的数值结果。数值结果定量地证明了对于相同的钢带钢筋土结构问题,两个程序可以很好地达成一致的条件,而在不同情况下,则可以很好地达成一致。例如,本文证明,根据用来对在平面应变方向上不连续的水平钢筋层进行建模的结构元件的类型,结果可能会有很大不同。 (C)2014 Elsevier Ltd.保留所有权利。

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