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Aseismic protection of historical structures using modern retrofitting techniques

机译:使用现代改造技术对历史建筑进行抗震保护

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For historical masonry structures existing in the Mediterranean area, structural strengthening is of primary importance due to the continuous earthquake threat that is posed on them. Proper retrofitting of historical structures involves a thorough understanding of their structural pathology, before proceeding with any intervention measures. In this paper, a methodology is presented for the evaluation of the actual state of historical masonry structures, which can provide a useful tool for the seismic response assessment before and after the retrofitting. The methodology is mainly focused on the failure and vulnerability analysis of masonry structures using the finite element method. Using this methodology the retrofitting of historical structures with innovative techniques is investigated. The innovative technique presented here involves the exploitation of Shape Memory Alloy prestressed bars. This type of intervention is proposed because it ensures increased reversibility and minimization of interventions, in comparison with conventional retrofitting methods. In this paper, a case study is investigated for the demonstration of the proposed methodologies and techniques, which comprises a masonry Byzantine church and a masonry Cistern. Prestressed SMA alloy bars are placed into the load-bearing system of the structure. The seismic response of the non-retrofitted and the retrofitted finite element models are compared in terms of seismic energy dissipation and displacements diminution.
机译:对于存在于地中海地区的历史性砖石结构,由于结构受到不断的地震威胁,因此结构加固至关重要。在进行任何干预措施之前,对历史结构进行适当的改造需要对其结构病理学有透彻的了解。本文提出了一种评估历史砌体结构实际状态的方法,可以为改造前后的地震响应评估提供有用的工具。该方法主要集中在使用有限元方法对砌体结构的破坏和脆弱性进行分析。使用这种方法研究了用创新技术对历史结构的改造。这里介绍的创新技术涉及形状记忆合金预应力筋的开发。之所以提出这种类型的干预措施,是因为与传统的改造方法相比,它可以确保增加的可逆性并最大限度地减少干预措施。本文以案例研究为例,对所提出的方法论和技术进行了论证,该方法论和技术包括砌筑的拜占庭教堂和砌筑的蓄水池。将预应力SMA合金棒放入结构的承重系统中。根据地震能量的耗散和位移的减小,比较了非改造和改造有限元模型的地震响应。

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