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Three-dimensional finite element analysis of geosynthetic-reinforced soil walls with turning corners

机译:转角土工合成加固土墙三维有限元分析

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The paper presents in-depth three-dimensional finite element analyses investigating geosynthetic-reinforced soil walls with turning corners. Validation of the 3D numerical procedure was first performed via comparisons between the simulated and reported results of a benchmark physical modeling built at the Royal Military College of Canada. GRS walls with corners of 90?, 105?, 120?, 135?, 150?, and 180? were simulated adopting the National Concrete Masonry Association guidelines. The behaviors of the GRS walls with corners, including the lateral facing displacement, maximum reinforcement load, factor of safety, potential failure surface, vertical separation of facing blocks, and types of corners were carefully evaluated. Our comprehensive results show (i) minimum lateral displacement occurs at the corner; (ii) lower strength of reinforcements are required at the corner; (iii) higher corner angles lead to lower stability; (iv) potential failure surface forms earlier at the end walls; (v) deeper potential failure surfaces are found at the corners; (vi) larger numbers of vertical separations are found at walls with smaller corner angles. The paper highlighted the salient influence of the corners on the behaviors of GRS walls and indicated that a 3D analysis could reflect the required reinforcement length and the irregular formation of the potential failure surfaces.
机译:本文提出了深入的三维有限元分析,调查具有转角的地球合式油钢筋土壁。首先通过在加拿大皇家军事学院建造的基准物理建模的模拟和报告的结果之间的模拟和报告结果之间的比较来进行3D数值的验证。 GRS墙壁,拐角90?,105?,120?,135?,150?,180?正在制定采用国家具体砌体协会指南。 GRS壁的行为与角落,包括横向面的位移,最大加强载荷,安全性,潜在的故障表面,面向块的垂直分离,以及拐角的类型。我们的综合结果表明(i)拐角处发生的最小横向位移; (ii)拐角处需要较低的增强强度; (iii)较高的角角导致稳定性降低; (iv)潜在的失效表面在端壁上的形式形式形成; (v)在角落发现更深层次的潜在失效表面; (vi)在具有较小角角的墙壁上发现较大数量的垂直分离。本文突出了角落对GRS壁的行为的突出影响,并表明3D分析可以反映所需的增强长度和潜在失效表面的不规则形成。

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