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Integrated Use of Measurements for the Structural Diagnosis in Historical Vaulted Buildings

机译:历史拱形建筑物结构诊断的综合使用测量

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摘要

The process of the structural diagnosis of historical buildings is analyzed. The correlation of different data is a fundamental issue, related to the multidisciplinary nature of the study of built heritage. Quantitative data are collected by sensors, these being environmental data (temperature and humidity) or cracks (displacements). Another important source being qualitative data, derived from historic investigation, diagnostic investigations, etc. However sometimes the results may be difficult to correlate due to the different nature of the data, being quantitative and qualitative, as well as spread over the long life of the construction. In particular, the here proposed methodology suggests the use of light detection and ranging (LiDAR) scanning for the geometric and structural deformation survey, damage survey, historic evolution, monitoring of the crack pattern and environmental data. The integrated use of the collected data with digital and finite element models is investigated in two case studies. The combined use of the set of collected data is shown to be fundamental to the interpretation of the active damage mechanisms in the system, and for making appropriate decisions related to their safety. Finally, a guideline is proposed to allow for a more general use of the herein proposed structural diagnosis procedure.
机译:分析了历史建筑结构诊断的过程。不同数据的相关性是一个基本问题,与建立遗产研究的多学科性质有关。定量数据由传感器收集,这些是环境数据(温度和湿度)或裂缝(位移)。来自历史调查,诊断调查等的定性数据的另一个重要来源是有时,由于数据的不同性质,难以关联的结果,是定量和定性的,以及在长寿命中传播建造。特别是,这里提出的方法表明,使用光检测和测距(LIDAR)扫描,用于几何和结构变形调查,损伤调查,历史演变,监测裂缝模式和环境数据。在两个案例研究中,研究了使用数字和有限元模型的收集数据的集成使用。该组集收集的数据的组合使用被认为是解释系统中的主动损坏机制以及与其安全相关的适当决策的基础。最后,提出了一种准则,以允许更一般地使用本文提出的结构诊断程序。

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