典型荷兰URM建筑墩墙连接的数值研究

D. Fusco, F. Messali, J. Rots, D. Addessi, S. Pampanin
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引用次数: 1

摘要

近年来,由于天然气开采,荷兰北部的地震风险有所增加。自2014年以来,代尔夫特理工大学开始了一项研究计划,以评估无加固砌体(URM)建筑的地震反应。荷兰URM建筑的特点是细长的桥墩和横向的墙。在通常的实践中,桥墩和横向墙之间的连接通常被建模为刚性的,但在实际结构中,这些连接可能表现出不同的行为。特别是自20世纪80年代以来,荷兰建筑普遍采用硅酸钙元素砌筑,横墙之间存在垂直连续缝。因此,评估连接强度特性显得至关重要,因为它的破坏会显著降低整个结构的抗震性能。本工作的第一部分研究并比较了不同的数值方法来描述砌体在侧向荷载下的非线性行为,模拟地震作用。第二部分特别关注与荷兰URM建筑垂直连接建模相关的关键问题。通过对摩擦参数的敏感性研究,分析了胶合连接强度对结构整体响应的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Study of Pier-Wall Connections in Typical Dutch URM Buildings
In recent years, the seismic risk in the north of the Netherlands has increased due to gas extraction. Since 2014, the Delft University of Technology started a research program to assess the seismic response of unreinforced masonry (URM) buildings. The Dutch URM buildings are characterized by slender piers and transverse walls. In common practice, the connections between piers and transverse walls are often modelled as rigid, but in real structures these connections may exhibit different behaviour. Especially, since the 1980s, calcium silicate element masonry has been commonly used in Dutch buildings, and vertical continuous joints are present between transverse walls. For this reason, it appears essential to assess the connection strength properties, since its failure can significantly reduce the seismic performance of the entire structure. The first part of this work investigates and compares different numerical approaches to describe the nonlinear behaviour of masonry under lateral loads, simulating seismic action. The second part specifically focuses on the critical issues related to the modelling of vertical connections of Dutch URM buildings. A sensitivity study of the frictional parameters is performed to analyze the influence of the strength of the glued connection on the global response of the URM structure.
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