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Parametric Study on the Approach Problem of an Integral Abutment Bridge Subjected to Cyclic Loading due to Temperature Changes

机译:对温度变化引起的循环加载的整体抵桥桥梁的方法问题的参数研究

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Integral Abutment Bridges are widely utilized around the world because they offer a design alternative minimizing the potential construction and maintenance difficulties associated with expansion joints in other types of bridges. However, integral bridge systems also have certain issues that result from the absence of expansion joints. This is because temperature changes induce cycles of elongations and shortenings in the bridge deck which lead to rotational movements in bridge abutments against and away from the retained soil. This phenomenon may develop long term problems in terms of settlement of the backfill at the bridge approach and escalation in the lateral earth pressure acting on the bridge abutments. This paper aims to investigate the approach settlement and lateral earth pressure development in integral bridges abutments using finite element modelling of a concrete bridge abutment and the adjoining soil using the ABAQUS software. The paper presents a parametric study of the effects imposed by abutment movements on the retained soil. This study also investigates the effectiveness of using expanded polystyrene (EPS) geofoam inclusions as a remedial measure to minimize the approach settlement and lateral stress ratcheting effects in Integral Abutment Bridges.
机译:因为他们提供了一个设计方案尽量减少与其他类型的桥梁伸缩缝相关的潜在的建设和维护困难,整体式桥台桥梁被世界各国广泛采用。然而,整体桥系统也有从没有伸缩缝导致某些问题。这是因为温度的变化诱导,其导致旋转运动在桥墩靠并从所保持的土壤远在桥面伸长和起酥油的周期。这种现象可能发展在侧向土压力作用于桥台引桥和升级回填结算方面的长期问题。本文旨在探讨解决办法和侧向土压力发展,采用有限元混凝土桥台的造型整体桥桥台和使用ABAQUS软件毗邻的土壤。本文介绍的效果参数研究强加在保留土地区桥台的动作。本研究还研究了使用发泡聚苯乙烯(EPS)geofoam夹杂物作为补救措施以最小化的方法和结算在整体式桥台桥梁横向应力棘轮效果的有效性。

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