期刊文献+

Introspection on improper seismic retrofit of Basilica Santa Maria di Collemaggio after 2009 Italian earthquake

Introspection on improper seismic retrofit of Basilica Santa Maria di Collemaggio after 2009 Italian earthquake
下载PDF
导出
摘要 The 2009 L’Aquila, Italy earthquake highlighted the seismic vulnerability of historic masonry building structures due to improper "strengthening" retrofit work that has been done in the last 50 years. Italian seismic standards recommend the use of traditional reinforcement techniques such as replacing the original wooden roof structure with new reinforced concrete (RC) or steel elements, inserting RC tie-beams in the masonry and new RC floors, and using RC jacketing on the shear walls. The L’Aquila earthquake revealed the numerous limitations of these interventions, because they led to increased seismic forces (due to greater additional weight) and to deformation incompatibilities of the incorporated elements with the existing masonry walls. This paper provides a discussion of technical issues pertaining to the seismic retrofit of the Santa Maria di Collemaggio Basilica and in particular, the limitations of the last (2000) retrofit intervention. Considerable damage was caused to the church because of questionable actions and incorrect and improper technical choices. The 2009 L’Aquila, Italy earthquake highlighted the seismic vulnerability of historic masonry building structures due to improper "strengthening" retrofit work that has been done in the last 50 years. Italian seismic standards recommend the use of traditional reinforcement techniques such as replacing the original wooden roof structure with new reinforced concrete (RC) or steel elements, inserting RC tie-beams in the masonry and new RC floors, and using RC jacketing on the shear walls. The L’Aquila earthquake revealed the numerous limitations of these interventions, because they led to increased seismic forces (due to greater additional weight) and to deformation incompatibilities of the incorporated elements with the existing masonry walls. This paper provides a discussion of technical issues pertaining to the seismic retrofit of the Santa Maria di Collemaggio Basilica and in particular, the limitations of the last (2000) retrofit intervention. Considerable damage was caused to the church because of questionable actions and incorrect and improper technical choices.
出处 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2011年第1期153-161,共9页 地震工程与工程振动(英文刊)
基金 European Community’s Seventh Framework Programme (Marie Curie International Reintegration Actions - FP7/2007-2013) under Grant No. PIRG06-GA-2009-256316 of the project ICRED - Integrated European Disaster Community Resilience
关键词 seismic vulnerability historic masonry building wooden roof structure seismic retrofit L’Aquila earthquake seismic vulnerability historic masonry building wooden roof structure seismic retrofit L’Aquila earthquake
  • 相关文献

参考文献12

  • 1Antonacci E, Beolchini G, Di Fabio F and Gattulli V (2001), "The Dynamic Behavior of the Basilica S. Maria of Collemaggio," 2nd International Congress on Studtes in Ancient Structures, Istanbul, Turkey.
  • 2Christopoulos C and Filiatrault A (2006), Principle of Passive Supplemental Damping and Seismic Isolation, Italy: IUSS Press, University of Pavia, pp. 480.
  • 3Ciampi V, Paolacci F, Perno S, Canio GD and Spadom S (1997), "Earthquake Simulator Testing of an Energy Dissipation System for Seismic Control of Buildings," Proceedings of International Post-SMiRT Conference on Seismic Isolation, Passive Energy Dissipation and Control of Vibration of Structures, Taormina, Italy, 715-722.
  • 4Cimellaro GP, Soong TT and Reinhorn AM (2009), "Integrated Design of Controlled Linear Structural Systems," Journal of Structural Engineering, ASCE, 135(7): 853-862.
  • 5Filiatrault A and Cherry S (1990). "Seismic Design Spectra for Friction-damped Structures," Journal of StructuralEngineering, ASCE, 116(5): 1334 1355.
  • 6Gluck N, Reinhorn A and Levy R (1996), "Design of Supplemental Dampers for Control of Structures," Journal of Structural Engineering, ASCE, 122(12): 1394-1399.
  • 7Lavan O, Cimellaro GP and Reinhorn AM (2008), "Noniterative Optimization Procedure for Seismic Weakening and Damping of Inelastic Structures," ASCE Journal of Structural Engineering, 134(10): 1638-1648.
  • 8Occhiuzzi A (2009), "Additional Viscous Dampers for Civil Structures: 'Analysis of Design Methods Based on Effective Evaluation of Modal Damping Ratios," Engineering Structures, 31(5): 1093-1101.
  • 9Roh HS and Reinhorn AM (2009), "Analytical Modeling of Rocking Elements," Engineering Structures, 31(5): 1179-1189.
  • 10Soong TT and Dargush G (1997), Passive Energy Dissipation Systems in Structural Engineering, John Wiley & Sons, Chechester, New York.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部