Multi-directional seismic assessment of historical masonry buildings by means of macro-element modelling: Application to a building damaged during the L'Aquila earthquake (Italy)

被引:24
作者
Cannizzaro, Francesco [1 ]
Pantò, Bartolomeo [1 ]
Lepidi, Marco [2 ]
Caddemi, Salvatore [1 ]
Caliò, Ivo [1 ]
机构
[1] Department of Civil Engineering and Architecture, University of Catania, Catania,95125, Italy
[2] Department of Civil Chemical and Environmental Engineering, University of Genoa, Genoa,16145, Italy
关键词
Acceleration - Application programs - Buildings - Earthquakes - Masonry construction - Masonry materials - Numerical models;
D O I
10.3390/buildings7040106
中图分类号
学科分类号
摘要
The experience of the recent earthquakes in Italy caused a shocking impact in terms of loss of human life and damage in buildings. In particular, when it comes to ancient constructions, their cultural and historical value overlaps with the economic and social one. Among the historical structures, churches have been the object of several studies which identified the main characteristics of the seismic response and the most probable collapse mechanisms. More rarely, academic studies have been devoted to ancient palaces, since they often exhibit irregular and complicated arrangement of the resisting elements, which makes their response very difficult to predict. In this paper, a palace located in L'Aquila, severely damaged by the seismic event of 2009 is the object of an accurate study. A historical reconstruction of the past strengthening interventions as well as a detailed geometric relief is performed to implement detailed numerical models of the structure. Both global and local models are considered and static nonlinear analyses are performed considering the influence of the input direction on the seismic vulnerability of the building. The damage pattern predicted by the numerical models is compared with that observed after the earthquake. The seismic vulnerability assessments are performed in terms of ultimate peak ground acceleration (PGA) using capacity curves and the Italian code spectrum. The results are compared in terms of ultimate ductility demand evaluated performing nonlinear dynamic analyses considering the actual registered seismic input of L'Aquila earthquake. © 2017 by the authors.
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