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Reinforcement loads in geosynthetic walls and the case for a new working stress design method

机译:土工合成材料墙中的增强载荷以及一种新的工作应力设计方法的案例

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The paper provides a synthesis of work by the writers that has the objective of developing a new working stress method for the calculation of reinforcement loads in geosynthetic reinforced soil walls. As a precursor to this objective, careful back-analyses of a database of instrumented and monitored full-scale field and laboratory walls are used to demonstrate that the current American Association of State Highway and Transportation Officials (AASHTO) Simplified Method used in North America results in excessively conservative estimates of the volume of reinforcement required to generate satisfactory long-term wall performance. The new design method captures the essential contributions of the different wall components and properties to reinforcement loads. The method is calibrated against measured in situ wall reinforcement loads using a careful interpretation of reinforcement strains and the conversion of strain to load using a suitably selected reinforcement stiffness value. A novel feature of the method is to design the wall reinforcement so that the soil within the wall backfill is prevented from reaching a failure limit state, consistent with the notion of working stress conditions.
机译:本文提供了作者的工作综述,其目的是开发一种新的工作应力方法,用于计算土工合成加筋土墙中的加筋荷载。作为此目标的先驱,对仪器化和监控​​的完整田间和实验室墙壁的数据库进行仔细的反向分析用于证明当前在北美使用的美国国家公路和运输官员协会(AASHTO)简化方法的结果对产生令人满意的长期墙体性能所需的钢筋量进行过分保守的估计。新的设计方法捕获了不同墙组件和特性对钢筋荷载的重要贡献。通过对钢筋应变的仔细解释和使用适当选择的钢筋刚度值将应变转换为荷载的方法,针对所测量的现场墙体钢筋载荷对方法进行校准。该方法的一个新颖特征是设计墙体增强材料,以防止墙体回填土中的土壤达到破坏极限状态,这与工作应力条件的概念一致。

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