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Three-dimensional modelling of a multi-span masonry arch bridge: Influence of soil compressibility on the structural response under vertical static loads

机译:多跨度砌体拱桥的三维建模:土壤压缩性对垂直静荷载作用响应的影响

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摘要

The paper presents the results of an experimental and numerical study aimed at investigating the structural response of a historical multi-span masonry arch bridge. The bridge, named Azzone Visconti bridge, was built in the 14th century and is placed in northern Italy. The bridge behaviour under static loads was checked by means of a sequence of acceptance load tests designed accordingly to the provisions of the Italian Code. A detailed 3D finite element model was built based on previous extensive geometric survey, historical data and mechanical characterization of both the soil constituting the riverbed and the stone masonry constituting the piers. Three different models describing the mechanical behaviour of the foundations have been implemented to include soil-structure interaction. A comparison between the experimental measures obtained during the acceptance load tests and the numerical results has allowed establishing the reliability of the models. Post-test nonlinear finite element analyses have allowed the evaluation of the bridge mechanical behaviour under vertical static loads. The influence of the different soil-structure interaction models adopted in the analyses on the evaluation of the bridge structural response is widely discussed.
机译:本文介绍了一个实验和数值研究的结果,旨在调查历史多跨砌体拱桥的结构响应。桥梁名为Azzone Visconti Bridge,建于14世纪,并位于意大利北部。通过相应设计的一系列接受负载测试来检查静态负载下的桥接行为。基于以前的广泛的几何调查,历史数据和构成码头的石材砌体的土壤的广泛的几何测量,历史数据和机械表征,建立了详细的3D有限元模型。已经实施了三种描述基础的机械行为的不同模型以包括土壤结构相互作用。在接受负载测试期间获得的实验措施与数值结果之间的比较允许建立模型的可靠性。后测试后非线性有限元分析允许在垂直静电负载下评估桥梁机械行为。探讨了分析中采用的不同土壤结构相互作用模型的影响,探讨了桥梁结构响应评价。

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