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La Sagrada Familia: Approaches to Seismic Analysis

机译:La Sagrada Familia:地震分析方法

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La Sagrada Familia in Barcelona is currently 135 years into its construction, with an expected completion date of 2O26. Since its inception by Antoni Gaudi in 1882, radical analysis and design methods have been required to imagine its architectural form and understand the engineering performance of what will be, once complete, the tallest church in the world. Gaudi famously used hanging chain models to realise the catenary form of his structures, a method which pre-empted modern form-finding software and enabled him to devise an organic optimised form long before this could be achieved with computers. When Gaudi designed the Sagrada Familia in the late 19th century, the influence of seismicity on structures was not well understood, and therefore not considered in the original design. To justify the seismic design of six towers due for construction on top of La Sagrada Familia today, a detailed non-linear model has been created, and subjected to time history analysis. The model is excited in the time domain by the Spanish code design level earthquake, filtered by the presence of the church below. The analysis represents the non-linear behaviour of masonry to assess the ductility capacity and collapse limits of the towers. The model has been calibrated using on-site measurements taken of the dynamic properties of the current structure, modified by assumptions about cracking under seismic excitation. This paper describes the modelling and analysis methodology undertaken, before highlighting further potential uses of the techniques.
机译:巴塞罗那的La Sagrada Familia目前是135年的建筑,预计完成日期为2O26。自1882年Antoni Gaudi成立以来,需要激进的分析和设计方法来想象其建筑形式,并了解曾经完整的世界上最高的教会的工程表现。 Gaudi着名的悬挂链模型来实现他的结构的追逐形式,这是一种预先抛出现代形式的软件的方法,使他能够在计算机实现之前长期设计有机优化的形式。当加德迪在19世纪后期设计了Sagrada Familia时,震荡对结构的影响并不充分了解,因此在原始设计中不考虑。为了为今天La Sagrada Familia的施工施工的六大塔的地震设计,已经创建了一个详细的非线性模型,并持续时间历史分析。该模型在时域中兴奋的西班牙代码设计级地震,通过下面的教堂的存在来过滤。该分析代表了砌体的非线性行为,以评估塔的延展性容量和塌陷极限。使用现场测量校准了模型,采用了当前结构的动态特性,通过关于抗震激发裂缝的假设来修改。本文介绍了在突出了技术的进一步潜在用途之前进行的建模和分析方法。

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