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The seismic sequence of 2016-2017 in Central Italy: a numerical insight on the survival of the Civic Tower in Amatrice

机译:意大利中部2016-2017的地震序列:关于跨越公民塔生存的数值洞察

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This work is aimed at the numerical interpretation of the evolution of damage and collapses observed on the Civic Tower of Amatrice, caused by the main events of the seismic sequence of 2016 in the Apennine area of Central Italy. In particular, the study considers the response of the tower with reference to the two main events, occurred on August 24th and October 30th, 2016 respectively. Non-linear dynamic analyses were carried out by developing a finite element model and the behaviour of the tower was investigated with reference to the damage and partial collapses produced by the main events. In dynamic numerical analyses, the accelerograms corresponding to the main seismic events obtained with the study of the site effects were used as seismic input. Moreover, studies have been carried out to understand if and which of the interventions of reinforcement/seismic improvement, realized at the beginning of the years '80, have been determinant to limit the damage, avoiding the complete collapse of the tower. The results of the study, on the one hand, allow to highlight a good correspondence between the evolution of the actual damage observed on the tower and the damage assessed by numerical analyses thus demonstrating the validity of the numerical models set up for the analyses. On the other hand, however, they have made it possible to underline how the presence of the improved material and structural reinforcement interventions carried out at the beginning of the years '80 have contributed to avoid the complete collapse of the tower.
机译:这项工作旨在旨在对在意大利中部亚平宁地区的地震区的地震序列的主要事件造成的伤害和崩溃的数值解释。特别是,该研究考虑了塔的响应,参考这两个主要事件,于2016年8月24日和10月30日发生。通过开发有限元模型进行非线性动态分析,并参考主要事件产生的损坏和部分折叠研究了塔的行为。在动态数值分析中,使用与现场效果的研究获得的主要地震事件相对应的加速局作为地震输入。此外,已经进行了研究,以了解在年初的增强/地震改善的情况下,在80年初实现的,已经确定了限制损害的决定因素,避免塔的完全崩溃。一方面,研究结果允许突出塔上观察到的实际损伤的演变与数值分析评估的损害之间的良好对应关系,从而证明了用于分析的数值模型的有效性。然而,另一方面,他们使他们能够强调在数年初开始的改进的材料和结构增强干预的存在贡献,避免了塔的完全崩溃。

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