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Numerical Models for the Assessment of Historical Masonry Structures and Materials, Monitored by Acoustic Emission

机译:声发射监测的历史砌体结构和材料评估的数值模型

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摘要

The paper reviews some recent numerical applications for the interpretation and exploitation of acoustic emission (AE) monitoring results obtained from historical masonry structures and materials. Among possible numerical techniques, the finite element method and the distinct method are considered. The analyzed numerical models cover the entire scale range, from microstructure and meso-structure, up to full-size real structures. The micro-modeling includes heterogeneous concrete-like materials, but mainly focuses on the masonry texture meso-structure, where each brick and mortar joint is modeled singularly. The full-size models consider the different typology of historical structures such as masonry towers, cathedrals and chapels. The main difficulties and advantages of the different numerical approaches, depending on the problem typology and scale, are critically analyzed. The main insight we can achieve from micro and meso numerical modeling concerns the scaling of AE as a function of volume and time, since it is also able to simulate the b-value temporal evolution as the damage spread into the structure. The finite element modeling of the whole structure provides useful hints for the optimal placement of the AE sensors, while the combination of AE monitoring results is crucial for a reliable assessment of structural safety.
机译:本文回顾了一些最近的数值应用,它们用于解释和利用从历史砌体结构和材料中获得的声发射(AE)监测结果。在可能的数值技术中,考虑了有限元法和离散法。分析的数值模型涵盖了整个尺度范围,从微观结构和介观结构到完整尺寸的实际结构。微观建模包括非均质的混凝土材料,但主要关注砌体结构的细观结构,其中每个砖瓦连接处均采用单一建模。全尺寸模型考虑了历史建筑的不同类型,例如砖石塔,大教堂和教堂。严格地分析了不同数值方法的主要困难和优点,这取决于问题的类型和规模。我们可以从微观和中观数值模型中获得的主要见解涉及AE随体积和时间变化的比例,因为它还能够模拟b值随时间的演变,随着损伤扩散到结构中。整个结构的有限元建模为AE传感器的最佳放置提供了有用的提示,而AE监测结果的组合对于可靠地评估结构安全性至关重要。

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