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Acoustic emission monitoring of Italian historical buildings and the case study of the Athena temple in Syracuse

机译:意大利历史建筑的声发射监测和锡拉库扎雅典娜神庙的案例研究

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摘要

Historical buildings often show diffused crack patterns due to different causes in relation to original function, construction technique and loading history. Non-destructive testing methods applied as in situ monitoring systems allow reliable evaluation of the state of conservation of these structures and its evolution in time. At first, in this paper different case studies are briefly presented to show the acoustic emission (AE) technique capability on damage evolution assessment in ancient brick and stone artworks, and to understand the most probable cause of evolving damage. Therefore, the specific case of the Syracuse Athena Temple, located in Sicily (Italy), is shown in detail. In this study, the AE technique was used to assess the evolution of damage in a pillar, which is part of the vertical load-bearing structure. By applying the AE source localization method, it proved possible to identify the microcrack initiation points inside the pillar, showing the presence of a damaging phenomenon that is evolving slowly but progressively. Finally, considering the AE data and the seismic records in a ray of 50 km from the Syracuse Athena Temple, a strong correlation between AE and the sequence of nearby earthquakes has been observed. This suggests that AE structural monitoring coupled with the analysis of local earthquake activity can be a tool of crucial importance in earthquake damage mitigation.
机译:由于与原始功能,施工技术和装货历史有关的原因不同,历史建筑经常显示出分散的裂缝模式。用作现场监测系统的非破坏性测试方法可以对这些结构的保护状态及其随时间的演变进行可靠的评估。首先,本文简要介绍了不同的案例研究,以展示声发射(AE)技术在古代砖石艺术品的损伤演变评估中的能力,并了解造成损伤演变的最可能原因。因此,详细显示了位于西西里岛(意大利)的锡拉丘兹雅典娜神庙的具体情况。在这项研究中,AE技术用于评估支柱的破坏演变,该支柱是垂直承重结构的一部分。通过应用AE源定位方法,证明有可能识别出支柱内部的微裂纹起始点,表明存在缓慢但逐步发展的破坏现象。最后,考虑到距锡拉丘兹雅典娜神庙50公里的射线中的AE数据和地震记录,已观察到AE与附近地震序列之间的强相关性。这表明,声发射结构监测以及对当地地震活动的分析可能是减轻地震破坏的关键工具。

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