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Limit analysis of lateral earth pressure on geosynthetic-reinforced retaining structures using finite element and second-order cone programming

机译:利用有限元和二阶锥形编程对地球合式加强挡土结构侧面接地压力的极限分析

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摘要

In this paper, a thorough numerical study is conducted to rigorously evaluate the lateral earth pressures exerted on the retaining walls backfilled with geosynthetic-reinforced soil strata. With this aim, the lower bound theorem of limit analysis is exploited in conjunction with the finite element discretization method. The computational programming adopting second-order cone optimization is employed to model the Mohr-Coulomb yield criterion in its respective nonlinear form. The reinforcement layers are assumed to bear solely axial tension; but not bending moment, which is the common characteristic of all geosynthetic materials. Results show that the horizontal stress field behind retaining structures is heavily disturbed by placing geosynthetic layers, especially in close proximity to the retaining structure. Accordingly, the failure zone shrinks in size and the lateral earth pressure decreases by either adding more reinforcement layers or increasing their relative lengths. Through a comprehensive parametric survey, the influence of several parameters, including internal friction angle, soil-wall and soil-reinforcement interface friction angles, length and number of reinforcements, soil inherent anisotropy and surface loading on the lateral earth pressure is meticulously examined. The employed formulations are rigorously compared with results published in the literature. A design table is also provided so as to effectively estimate the active earth pressure coefficient of geosynthetic-reinforced walls accounting for all contributing parameters.
机译:在本文中,进行了彻底的数值研究,以严格评估施加在用地磁增强土层填充的挡土墙上施加的横向接地压力。为此目的,利用有限元离散化方法利用极限分析的下限定理。采用采用二阶锥优化的计算编程以在其各自的非线性形式中模拟MoHR-Coulomb产率标准。假设加强层仅承受轴向张力;但不是弯矩,这是所有土工合成材料的共同特征。结果表明,通过放置地质合成层,特别是靠近保持结构,保持结构背后的水平应力场非常干扰。因此,故障区的尺寸缩小,并且通过添加更多的加强层或增加它们的相对长度来减小横向接地压力。通过综合参数调查,若干参数的影响,包括内部摩擦角,土壁和土壤加强界面摩擦角,长度和横向接地压力的土壤固有的各向异性和表面负载的含量。与文献中发表的结果相比,使用的制剂严格地进行了严格。还提供了一种设计表,以便有效地估计地质合成加强墙的主动接地压力系数核对所有贡献参数。

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