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Evaluating reinforcement loading within surcharged segmental block reinforced soil walls using a limit state framework

机译:使用极限状态框架评估过分分段砌块加筋土墙内的钢筋荷载

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摘要

Internal design of Mechanically Stabilized Earth (MSE) Walls are frequently based on lateral earth pressure methods. A key component of limit state design includes determination of the necessary resisting forces of reinforcements to enable stability and function of the internal reinforcing components. However, conventional methods (e.g. Rankine) are not directly applicable when accounting for surcharge loading that is non-uniform, often manifested by the presence of strip footings placed directly on the reinforced soil. Within this study, an approach is presented to determine the reactive loads in individual reinforcements, T-max, using limit analysis (LA) considering a log-spiral mechanism and the effects of facing elements for segmental block reinforced soil walls. Lateral earth pressures attained from this approach are consistent with simplified analyses presented in the literature, realizing reinforcement loads that are more reasonable when compared with observed reinforcement loading than conventional limit equilibrium-based methods. To demonstrate the effects of various design parameters, the relationship between soil strength properties, interface friction between the soil, facing and toe, wall height, wall batter and reinforcement loads were studied. (C) 2016 Elsevier Ltd. All rights reserved.
机译:机械稳定土(MSE)墙的内部设计通常基于侧向土压力方法。极限状态设计的关键组成部分包括确定增强所需的抵抗力,以实现内部增强组件的稳定性和功能。但是,当考虑不均匀的附加载荷时,常规方法(例如Rankine)不能直接应用,通常通过直接放置在加筋土上的条形基础来证明。在这项研究中,提出了一种方法,使用极限分析(LA)来考虑单个对数螺旋机制和分段砌块加筋土墙的饰面元素的影响,从而确定单个加筋的反作用载荷T-max。通过这种方法获得的侧向土压力与文献中提供的简化分析是一致的,与传统的基于极限平衡的方法相比,实现了与观察到的钢筋荷载相比更加合理的钢筋荷载。为了说明各种设计参数的影响,研究了土的强度特性,土,面和脚趾之间的界面摩擦,壁高,壁面糊和增强载荷之间的关系。 (C)2016 Elsevier Ltd.保留所有权利。

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