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OVERVIEW OF RAILWAY MASONRY BRIDGES WITH A SAFETY FACTOR ESTIMATE

机译:估计安全系数的铁路砌体桥概述

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The European rail network includes a large number of masonry arch bridges for which the actual safety level is uncertain due to the rise in traffic demand and the material deterioration that have occurred since they have been built. For this study, a representative sample of 50 Italian large-span railway masonry arch bridges dating to the 19th and 20th centuries is selected. The sample includes single-span and multi-span bridges, shallow and deep arches, viaducts with slender and stocky piers, for which the geometric properties are taken from original design drawings and calculation reports. Despite such variability, the main structural characteristics and construction methods recur and comply with the design criteria suggested by historical treatises. The load-carrying capacity of the bridges and the corresponding safety factor with respect to rail traffic loads are assessed through a fiber beam based modeling approach. Safety levels are related to the shape of the arch, the height of the piers and the number of spans. Different constitutive assumptions are considered and the results of yield-design based methods are compared with those accounting for limited ductility of masonry in compression. The influence of uncertainties in the knowledge of geometric and mechanical parameters is also evaluated.
机译:欧洲铁路网包括大量的砌体拱桥,由于交通需求的增加和建造以来发生的材料劣化,其实际安全水平尚不确定。对于本研究,选择了50个可追溯到19世纪和20世纪的意大利大跨度铁路砌体拱桥的代表性样本。该样本包括单跨和多跨桥梁,浅拱和深拱,带有细长墩的高架桥,其几何特性来自原始设计图和计算报告。尽管存在这种可变性,但主要的结构特征和构造方法仍会重用并符合历史论文提出的设计标准。通过基于纤维束的建模方法评估桥梁的承载能力和相对于铁路交通负荷的相应安全系数。安全等级与拱的形状,桥墩的高度和跨度的数量有关。考虑了不同的本构假设,并将基于屈服设计的方法的结果与考虑到砌体受压延展性有限的方法进行了比较。还评估了几何和机械参数知识中不确定性的影响。

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