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Use of rubberised backfills for improving the seismic response of integral abutment bridges

机译:使用橡胶回填料来改善整体式桥台的地震响应

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摘要

Reuse of the 1.5 billion waste tyres that are produced annually is a one of the major worldwide challenges, as waste tyres are toxic and cause pollution to the environment. In recognition of this problem, this paper introduces the reuse of tyres, in the form of derived aggregates in mixtures with granulated soil materials, as previous studies indicated the potential benefits of these materials in the seismic performance of structures. The objective of the present research study is to investigate whether use of rubberised backfills benefits the seismic response of Integral Abutment Bridges (IABs) by enhancing soil-structure interaction (SSI) effects. Numerical models including typical integral abutments on surface foundation with nonlinear conventional backfill material and its alternative form as soil-rubber mixtures are analysed and their response parameters are compared. The research is conducted on the basis of parametric analysis, which aims to evaluate the influence of different rubber-soil mixtures on the dynamic response of the abutment-backfill system under various seismic excitations, accounting for dynamic soil-abutment interaction. The results provide evidence that the use of rubberised backfill leads to reductions in the backfill settlements, the horizontal displacements of the bridge deck, the residual horizontal displacements of the top of the abutment and the pressures acting on the abutment, up to 55%, 18%, 43% and 47% respectively, with respect to a conventional backfill comprising of clean sand. Considerable amount of decrease in bending moments and shear forces on the abutment wall is also observed. Therefore, rubberised backfills offer promising solution to mitigate the earthquake risk, towards economic design with minimal damage objectives for the resilience of transportation networks.
机译:每年要生产的15亿只废旧轮胎的再利用是全世界的主要挑战之一,因为废旧轮胎有毒并会对环境造成污染。考虑到这一问题,本文介绍了轮胎的再利用,其形式为衍生的骨料与颗粒状土壤材料的混合物,因为先前的研究表明这些材料在结构抗震性能方面具有潜在的优势。本研究的目的是通过使用增强的土-结构相互作用(SSI)来研究使用橡胶回填材料是否有益于整体式桥台(IAB)的地震响应。分析了包括非线性常规回填材料在地基上的典型整体式基台及其作为土壤-橡胶混合物的替代形式的数值模型,并比较了它们的响应参数。该研究是在参数分析的基础上进行的,旨在评估各种橡胶-土壤混合物在各种地震激励下对桥台-回填系统动力响应的影响,并考虑了土-桥台之间的动态相互作用。结果提供了证据,表明使用橡胶回填可以减少回填沉降,桥面板的水平位移,桥台顶部的残余水平位移以及作用在桥台上的压力,最高可达55%,18相对于由干净的沙子组成的常规回填,分别为%,43%和47%。还观察到了在基台壁上弯矩和剪切力的显着降低。因此,橡胶回填为经济设计提供了有希望的解决方案,以减轻地震风险,并以最小的损坏目标实现运输网络的弹性。

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