Experimental measurement-based FE model updating and seismic response of Santa Maria Church and its guesthouse building

IF 3.6 2区 工程技术 Q1 ENGINEERING, CIVIL Journal of Civil Structural Health Monitoring Pub Date : 2024-01-08 DOI:10.1007/s13349-023-00747-9
Ahmet Can Altunişik, Murat Günaydin, Esin Ertürk Atmaca, Ali Fuat Genç, Fatih Yesevi Okur, Barış Sevim
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Abstract

This paper offers a structural assessment of the historical Santa Maria Church and its Guesthouse building in Trabzon, Turkey. This process involves non-destructive experimental investigation using ambient vibration test and numerical evaluation using finite element method. Finite element model updating procedure was employed for the buildings using experimental data such as dynamic features provided by the ambient vibration test. Time-history analyses were carried out by using initial and final finite element models to draw attention to the effectiveness of the finite element model updating procedure and evaluate the seismic performance. The 1992 Erzincan earthquake ground motion data was used for seismic analysis. The ground motion was exposed to buildings in bidirectional. The maximum displacements and principal stresses are detailed at the end of the analysis using contour diagrams. Result of the analyses, the buildings demonstrated a Limited Damage Performance Level throughout the imposed seismic record according to the Earthquake Risk Management Guide for Historical Structures which is a formal guide.

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基于实验测量的有限元模型更新和圣玛丽亚教堂及其宾馆建筑的地震响应
本文对土耳其特拉布宗历史悠久的圣玛丽亚教堂及其宾馆建筑进行了结构评估。评估过程包括使用环境振动测试进行非破坏性实验调查,以及使用有限元方法进行数值评估。利用环境振动测试提供的动态特征等实验数据,对建筑物采用了有限元模型更新程序。使用初始和最终有限元模型进行了时程分析,以关注有限元模型更新程序的有效性并评估抗震性能。地震分析采用了 1992 年埃尔津詹地震的地面运动数据。地面运动对建筑物的影响是双向的。分析结束时使用等值线图详细显示了最大位移和主应力。分析结果表明,根据《历史建筑地震风险管理指南》,建筑物在整个强加地震记录中的损坏程度有限。
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来源期刊
Journal of Civil Structural Health Monitoring
Journal of Civil Structural Health Monitoring Engineering-Safety, Risk, Reliability and Quality
CiteScore
8.10
自引率
11.40%
发文量
105
期刊介绍: The Journal of Civil Structural Health Monitoring (JCSHM) publishes articles to advance the understanding and the application of health monitoring methods for the condition assessment and management of civil infrastructure systems. JCSHM serves as a focal point for sharing knowledge and experience in technologies impacting the discipline of Civionics and Civil Structural Health Monitoring, especially in terms of load capacity ratings and service life estimation.
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