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Operational modal analysis and FE model updating of the Metropolitan Cathedral of Santiago, Chile

机译:智利圣地亚哥大都会大教堂的运行模式分析和有限元模型更新

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摘要

Heritage buildings in Latin American countries possess high architectural value. Studying these constructions under extreme loads, particularly earthquakes, requires representative models for simulating expected response. At present, the non-invasive Operational Modal Analysis (OMA) tests offer interesting possibilities for obtaining modal parameters to update and validate a structural model for this type of structure. In this context, this article focuses on the calibration and adjustment process for a finite element model of the Metropolitan Cathedral of Santiago Chile, based on experimentally identified modal and mechanical material properties. Accordingly, an in situ experimental campaign, aimed at obtaining the response of the structure due to ambient vibrations is presented and discussed. Six high-sensitivity synchronous triaxial accelerometers were employed in this campaign. Enhanced Frequency Domain Decomposition (EFDD) and Stochastic Subspace Identification (SSI), system identification methods, were applied. Mechanical tests were performed on the Cathedral's stone blocks. The experimental data and derived modal properties were used to generate and update a finite element model. Several considerations were made in the model updating process: the most relevant was the homogeneous treatment of the stone masonry with their mortar interface, and the boundary elements restraining effect caused by adjacent structures. A preliminary model updating process was applied to define the boundary conditions and initial material properties. This optimization was based on minimizing an error function given by the difference between the experimental and analytical frequencies. A second step was then applied, in which models with different material properties were evaluated within a physically possible range. The final model selection was based on the distance between the experimental and analytical frequencies, and the mode shapes. The updated model allows an assessment to be made of the structure behavior in its current condition and models to be prepared for a wide range of possible future research scenarios. (C) 2017 Elsevier Ltd. All rights reserved.
机译:拉丁美洲国家的文物建筑具有很高的建筑价值。要研究在极端载荷(尤其是地震)下的这些结构,需要具有代表性的模型来模拟预期的响应。当前,非侵入性操作模态分析(OMA)测试为获取模态参数提供了有趣的可能性,以更新和验证此类结构的结构模型。在这种情况下,本文重点研究了基于实验确定的模态和机械材料特性的智利圣地亚哥大都会大教堂的有限元模型的校准和调整过程。因此,提出并讨论了旨在获得由于环境振动引起的结构响应的原位实验活动。此活动中使用了六个高灵敏度同步三轴加速度计。应用了增强的频域分解(EFDD)和随机子空间识别(SSI)系统识别方法。在大教堂的石块上进行了机械测试。实验数据和导出的模态特性用于生成和更新有限元模型。在模型更新过程中需要考虑以下几个方面:最相关的是均质处理带有砂浆界面的砌石,以及边界元素对相邻结构造成的约束作用。应用了初步的模型更新过程来定义边界条件和初始材料属性。该优化基于最小化由实验频率和分析频率之间的差异给出的误差函数。然后应用第二步,其中在物理可能的范围内评估具有不同材料属性的模型。最终的模型选择基于实验频率和分析频率之间的距离以及模式形状。更新的模型允许对当前状态下的结构行为进行评估,并为将来可能的广泛研究场景准备模型。 (C)2017 Elsevier Ltd.保留所有权利。

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