期刊文献+

Topology optimization of shear wall structures under seismic loading 被引量:2

Topology optimization of shear wall structures under seismic loading
下载PDF
导出
摘要 A topology optimization formulation is developed to find the stiffest structure with desirable material distribution subjected to seismic loads. Finite element models of the structures are generated and the optimality criteria method is modified using a simple penalty approach and introducing fictitious strain energy to simultaneously consider both material volume and displacement constraints. Different types of shear walls with/without opening are investigated. Additionally, the effects of shear wall-frame interaction for single and coupled shear walls are studied. Gravity and seismic loads are applied to the shear walls so that the definitions provide a practical approach for locating the critical parts of these structures. The results suggest new viewpoints for architectural and structural engineering for placement of openings. A topology optimization formulation is developed to find the stiffest structure with desirable material distribution subjected to seismic loads. Finite element models of the structures are generated and the optimality criteria method is modified using a simple penalty approach and introducing fictitious strain energy to simultaneously consider both material volume and displacement constraints. Different types of shear walls with/without opening are investigated. Additionally, the effects of shear wall-frame interaction for single and coupled shear walls are studied. Gravity and seismic loads are applied to the shear walls so that the definitions provide a practical approach for locating the critical parts of these structures. The results suggest new viewpoints for architectural and structural engineering for placement of openings.
出处 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2020年第1期105-116,共12页 地震工程与工程振动(英文刊)
关键词 topology optimization seismic loads shear wall minimum compliance multiple constraints fi nite element analysis topology optimization seismic loads shear wall minimum compliance multiple constraints finite element analysis
  • 相关文献

参考文献2

二级参考文献37

  • 1Adhikari S (2000), "Damping Models for Structural Vibration," Dissertation, Cambridge University, UK.
  • 2Agranovich G and Ribakov Y (2010), "A Method for Efficient Placement of Active Dampers in Seismically Excited Structures," Structural Control and Health Monitoring, 17(5): 513-531.
  • 3Apostolakis G and Dargush GF (2010), "Optimal Seismic Design of Moment-resisting Steel Frames with Hysteretic Passive Devices," Earthquake Engineering and Structural Dynamics, 39: 355-376.
  • 4Aydin E, Boduroglu MH and Guney D (2007), "Optimal Damper Distribution for Seismic Rehabilitation of Planar Building Structures," Engineering Structures, 29(2): 176-185.
  • 5Bathe KJ (1996), Finite Element Procedures, Prentice Hall, Upper Saddle River, NJ.
  • 6Chopra AK (1995), Dynamics of Structures. Theory and Applications to Earthquake Engineering, Prentice hall, Englewood Cliffs, NJ.
  • 7Cimellaro GP and Retamales R (2007), "Optimal Softening and Damping Design for Buildings," Structural Control and Health Monitoring, 14:831-857.
  • 8Connor JJ (2003), Introduction to Structural Motion Control, Prentice Hall, Upper Saddle River.
  • 9Constantinou MC and Tadjbakhsh IG (1983), "Optimum Design of a First Story Damping System," Computers & Structures, 17(2): 305-310.
  • 10FEMA (2000), Prestandard and Commentary for the Seismic Rehabilitation of Buildings (FEMA 356), Federal Emergency Management Agency, Washington, DC.

共引文献3

同被引文献9

引证文献2

二级引证文献1

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