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Mechanically Stabilized Earth Walls: Parametric Study of Reinforcement Tensile Loads Under Limit State

机译:机械稳定的地球墙:在限制状态下的加固拉伸载荷的参数研究

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Mechanically Stabilized Earth (MSE) Walls are an increasingly common means of earth retention due to their ease of construction, cost, and performance. The use of manmade reinforcements to retain soil using its own self weight is very effective, yet it's design criteria is based upon a series of stability checks, internal and external, that do not always demonstrate the comprehensive behavior of the soil-reinforcement structure. Notably, the location and, possibly, the magnitude of the maximum stresses occurring within the reinforcement layers are not well defined, especially when a compound failure prevails. Within this paper, a parametric study is performed, observing the necessary tensile strength in the reinforcements to maintain stability while highlighting the need for stability analyses more robust than "internal" or "external" stability. Additionally, the effects of inter-block friction, interface friction from the backfill and toe resistance are evaluated to demonstrate possible over-conservatism in design. It is demonstrated that design criteria, which generalize for many reinforcement lengths and backfill shear strengths, may be conservative in various situations, especially for select backfill strengths. Additionally, the effects of interface friction are observed and shown to be significant, possibly cause for better-than-expected field performance.
机译:由于其易于施工,成本和性能,机械稳定的地球(MSE)墙壁是越来越常见的接地保留手段。使用曼德增援使用自己的自身重量保持土壤是非常有效的,但它的设计标准是基于一系列稳定性检查,内部和外部,并不总是证明土壤加固结构的综合行为。值得注意的是,在加强层内发生的最大应力的大小没有明确,特别是当复合衰竭占上风时。在本文中,进行参数研究,观察增强件中的必要拉伸强度,以保持稳定性,同时突出稳定性的需求,分析比“内部”或“外部”稳定性更鲁棒。另外,评估了块间摩擦,从回填和趾电阻的界面摩擦的影响,以展示设计中可能的过保守。据证明,设计标准,其概括了许多加强长度和回填剪切强度,可以是保守的各种情况,特别是对于选择回填强度。另外,观察到界面摩擦的影响并显示出很大,可能导致比预期的场效比更好。

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