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Laser scanning-based detection of morphological changes of a historical building occurred during a seismic sequence: Method and Case study

机译:基于激光扫描的地震序列中历史建筑形态变化的检测:方法和案例研究

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A tall masonry building in an area hit by an earthquake could suffer of some damages whose detection and evaluation are necessary for both emergency management and planning of restoration works. A complete characterization of the health state of a potentially damaged structure requires an integration of data provided by several techniques, which could be impossible in earthquake emergency conditions. The duration of a seismic sequence can reach several months and the state of a tall building could change after each significant shock. Terrestrial laser scanning (TLS) allows a fast and contactless acquisition as well as an accurate geometric modeling of a building and therefore can be used to evaluate the seismic-induced changes, possibly related to damages. The results of a study based on TLS monitoring the 100-m high Asinelli tower (Bologna, Italy), which is a very important element of the Italian medieval cultural heritage, during the 2012 Emilia Romagna seismic sequence are provided and discussed here. This work focuses on both method and case study. It is aimed to show how much information, reliable and accurate, can be extracted in a quick and simple way under alert conditions. Moreover, the structural behavior of the tower is provided. Considerations about natural oscillations of a tower subjected to seismic activity are also provided.
机译:地震灾区的一栋高大的砖石建筑可能会遭受一些破坏,其损坏和评估对于应急管理和修复工作的计划都是必要的。要完整描述潜在损坏结构的健康状态,需要对几种技术提供的数据进行整合,这在地震紧急情况下是不可能的。地震序列的持续时间可能长达数月,并且每次严重震动后高层建筑的状态都可能发生变化。地面激光扫描(TLS)可以实现建筑物的快速非接触式采集以及精确的几何建模,因此可以用来评估地震引起的变化,可能与破坏有关。此处提供并讨论了基于TLS的100米高Asinelli塔(意大利博洛尼亚)的监测研究结果,该塔是意大利中世纪文化遗产中非常重要的元素,在2012年Emilia Romagna地震序列中进行了讨论。这项工作侧重于方法和案例研究。它旨在显示在警报情况下可以快速,简单地提取多少可靠且准确的信息。此外,提供了塔架的结构性能。还提供了有关经受地震活动的塔架自然振动的考虑。

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