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Non-Smooth Dynamic Analysis of Local Seismic Damage Mechanisms of the San Felice Fortress in Northern Italy

机译:意大利北方圣菲利堡局部地震损伤机制的非平滑动力分析

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The May 2012 seismic swarm, with epicenter in the Modena plane, in Northern Italy, had severe consequences on the historical buildings of the area. In particular, the fortified structures suffered specific, recurring damage and collapse mechanisms. The present paper deals with the case of the San Felice sul Panaro Fortress, which saw the collapse of 4 out of 5 towers and many other global and local effects. The work starts with an in-depth knowledge path, as a fundamental premise for a conscious intervention. The combination among historical analysis of the building, seismic history of the site, materials and pathological survey, structural identification, on-site inspections and tests, allowed to interpret the crack pattern and to identify the damage mechanisms activated by the earthquake, successively examined with specific structural analyses. In particular, the present paper concentrates on the numerical modelling of the identified local mechanisms, adopting a type of analysis first developed at the University of Parma for applied mechanics, based on the use of non-smooth dynamics software, through a Differential Variational Inequalities (DVI) formulation specifically developed for the 3D discrete elements method. It allows to follow large displacements and the opening and closure of cracks in dynamic field. Once the modelling instrument was calibrated, thanks to the comparison with the real damages previously inspected, it was also applied to foresee the behavior of the same mechanisms with different actions and with different types of strengthening.
机译:2012年5月,在意大利北部的莫德纳飞机上的震中震中群体对该地区的历史建筑有严重的后果。特别是,强化结构遭受了特定的,经常性的损伤和塌陷机制。本文涉及San Felice Sul Panaro Fortress的案例,它看到了5个塔楼中的4个和其他许多全球和局部效果。这项工作以深入的知识道路开始,作为有意识的干预的基本前提。建筑物的历史分析中的结合,地震史,材料和病理调查,结构鉴定,现场检查和试验,允许解释裂纹模式,并识别地震激活的损伤机制,同时检查具体的结构分析。特别地,本文专注于所识别的本地机制的数值模型,采用一系列分析,在帕尔马大学进行应用力学,基于使用非平滑动力学软件,通过差异变分不等式( DVI)专门为3D离散元件方法开发的配方。它允许遵循大型位移和动态场中的裂缝的开口和闭合。校准建模仪器后,由于与先前检查的真实损害的比较,还应用于预见与不同动作的相同机制的行为和不同类型的加强。

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