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Serviceability design for geosynthetic reinforced column supported embankments

机译:土工合成材料加筋柱路堤的可服务性设计

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In recent years, geosynthetic reinforced column supported embankments (GRCSEs) have become an increasingly popular design solution for road and rail infrastructure constructed over soft soil sites. However, the serviceability behaviour and deformation that often govern the suitability of their design is not well understood. This is due, in part, to the difficulties in describing the arching stress development in the load transfer platform (LTP). This paper highlights the need for coupled arching stress-deformation models to describe accurately serviceability behaviour. This approach contrasts the widely adopted twostep design approach, which uses limit-equilibrium models that de-couple the arching stress deformation relationship to describe ultimate limit state behaviour. Using an analytical example, an " archirig stress/deformation model and an empirical relationship (developed by others) relating base LTP settlement to surface settlement, the relationship between serviceability behaviour and soft soil parameters is highlighted and the conditions leading to progressive collapse in GRCSEs are described. The approach presented provides a means to predict serviceability behaviour, and at the same time, raises questions about the long-term performance and the manner in which acceptable performance has been achieved in the short-term in several field case studies. In particular, those constructed at, or near, a minimum embankment height. (C) 2017 Elsevier Ltd. All rights reserved.
机译:近年来,土工合成材料加筋柱支撑路堤(GRCSE)已成为在软土地基上建造的公路和铁路基础设施越来越流行的设计解决方案。但是,对于支配其设计适用性的可维护性行为和变形却知之甚少。这部分是由于难以描述载荷传递平台(LTP)中的拱形应力发展。本文强调了需要结合拱形应力-变形模型来准确描述可维护性行为。该方法与广泛采用的两步设计方法形成对比,该方法使用极限平衡模型,该模型将拱形应力变形关系解耦以描述极限极限状态行为。使用一个分析示例,建立了一个“原型应力/变形模型以及将基础LTP沉降与地表沉降联系起来的经验关系(由他人开发),强调了可使用性行为与软土参数之间的关系,并指出了导致GRCSE逐渐塌陷的条件”所介绍的方法提供了一种预测可维护性行为的方法,同时,在一些现场案例研究中,对长期性能以及短期内达到可接受性能的方式提出了疑问。 (C)2017 Elsevier Ltd.保留所有权利。

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