期刊文献+

Behavior of ductile steel X-braced RC frames in seismic zones

Behavior of ductile steel X-braced RC frames in seismic zones
下载PDF
导出
摘要 A satisfactory ductile performance of moment-resisting reinforced concrete concentric braced frame structures (RC-MRCBFs) is not warranted by only following the provisions proposed in Mexico’s Federal District Code (MFDC-04). The nonlinear behavior of low to medium rise ductile RC-MRCBFs using steel X-bracing susceptible to buckling is evaluated in this study. The height of the studied structures ranges from 4 to 20 stories and they were located for design in the lakebed zone of Mexico City. The design of RC-MRCBFs was carried out considering variable contribution of the two main lines of defense of the dual system (RC columns and steel braces). In order to observe the principal elements responsible for dissipating the earthquake input energy, yielding mappings for diff erent load-steps were obtained using both nonlinear static and dynamic analyses. Some design parameters currently proposed in MFDC-04 as global ductility capacities, overstrength reduction factors and story drifts corresponding to diff erent limit states were assessed as a function of both the considered shear strength and slenderness ratios for the studied RC-MRCBFs using pushover analyses. Additionally, envelopes of response maxima of dynamic parameters were obtained from the story and global hysteresis curves. Finally, a brief discussion regarding residual drifts, residual drift ratios, mappings of residual deformations in steel braces and residual rotations in RC beams and columns is presented. From the analysis of the obtained results, it is concluded that when a suitable design criterion is considered, good structural behavior of RC-MRCBFs with steel-X bracing can be obtained. It is also observed that the shear strength balance has an impact in the height-wise distribution of residual drifts, and an important “shake-down” eff ect is obtained for all cases. There is a need to improve design parameters currently proposed in MFDC to promote an adequate seismic performance of RC-MRCBFs. A satisfactory ductile performance of moment-resisting reinforced concrete concentric braced frame structures(RC-MRCBFs) is not warranted by only following the provisions proposed in Mexico’s Federal District Code(MFDC-04). The nonlinear behavior of low to medium rise ductile RC-MRCBFs using steel X-bracing susceptible to buckling is evaluated in this study. The height of the studied structures ranges from 4 to 20 stories and they were located for design in the lakebed zone of Mexico City. The design of RC-MRCBFs was carried out considering variable contribution of the two main lines of defense of the dual system(RC columns and steel braces). In order to observe the principal elements responsible for dissipating the earthquake input energy, yielding mappings for different load-steps were obtained using both nonlinear static and dynamic analyses. Some design parameters currently proposed in MFDC-04 as global ductility capacities, overstrength reduction factors and story drifts corresponding to different limit states were assessed as a function of both the considered shear strength and slenderness ratios for the studied RC-MRCBFs using pushover analyses. Additionally, envelopes of response maxima of dynamic parameters were obtained from the story and global hysteresis curves. Finally, a brief discussion regarding residual drifts, residual drift ratios, mappings of residual deformations in steel braces and residual rotations in RC beams and columns is presented. From the analysis of the obtained results, it is concluded that when a suitable design criterion is considered, good structural behavior of RC-MRCBFs with steel-X bracing can be obtained. It is also observed that the shear strength balance has an impact in the height-wise distribution of residual drifts, and an important "shake-down" effect is obtained for all cases. There is a need to improve design parameters currently proposed in MFDC to promote an adequate seismic performance of RC-MRCBFs.
出处 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2019年第4期845-869,共25页 地震工程与工程振动(英文刊)
基金 National Science and Technology Council of Mexico (Conacyt)
关键词 RC braced-frames seismic design nonlinear dynamic analyses steel-X BRACING OVERSTRENGTH collapse mechanism story DRIFTS residual DRIFTS RC braced-frames seismic design nonlinear dynamic analyses steel-X bracing overstrength collapse mechanism story drifts residual drifts
  • 相关文献

参考文献2

二级参考文献9

  • 1GB50011-2010建筑抗震设计规范[S].北京:中国建筑工业出版社,2010.
  • 2JGJ99-98高层民用建筑钢结构技术规程[S].北京:中国建筑工业出版社,1998.
  • 3UBC1997. The Uniform Building Code [S]. Whittier: International Conference of Building Officials, 1997.
  • 4ANSI/AISC 341-05. Seismic Provisions for Structural Steel Buildings [ S ]. Chicago: American Institute of Steel Construction, Inc,2005.
  • 5TREMBLAY R, TIMLER P, BRUNEAU M, et al. Performance of steel structures during the 1994 northridge earthquake[J]. Canadian Journal of Civil Engineering, 1995,22 : 338 - 360.
  • 6RAI D C, GOEL S C. Seismic evaluation and upgrading of chevron braced frames [ J]. Journal of Constructional Steel Research, 2003,59 : 971 - 994.
  • 7FUKUTA T, NISHIYAMA I, YAMANOUCHI H, et al. Seismic performance of steel frames with inverted V braces [J]. Journal of Structural Engineering, 1989, 115(8) : 2016 -2028.
  • 8DOMINGUEZ E A G, COLUNGA A T. Nonlinear behavior of code-designed reinforced concrete concentric braced frames under lateral loading [ J ]. Engineering Structures, 2010, 32(4): 944-963.
  • 9MFDC-04 Reglamento de Construcciones para el Distrito Federal [ S]. Spanish: Gaceta Oficial del Departamento del Distrito Federal, 2004.

共引文献4

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