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Structural System Selection and Highlights of Changsha IFC T1 Tower

  • Jianlong, Zhou (East China Architectural Design and Research Institute Co. Ltd.) ;
  • Daoyuan, Lu (East China Architectural Design and Research Institute Co. Ltd.) ;
  • Liang, Huang (East China Architectural Design and Research Institute Co. Ltd.) ;
  • Jun, Ji (East China Architectural Design and Research Institute Co. Ltd.) ;
  • Jun, Zhu (East China Architectural Design and Research Institute Co. Ltd.) ;
  • Jingyu, Wang (East China Architectural Design and Research Institute Co. Ltd.)
  • 발행 : 2014.06.30

초록

This paper presents the determination of the structural system of the Changsha IFC T1 tower with 452 m in architectural height and 440.45 m in structural height. Sensitivity analyses are carried out by varying the location of belt trusses and outriggers. The enhancement of seismic capacity of the outer frame by reasonably adjusting the column size is confirmed based on parametric studies. The results from construction simulation including the non-load effect of structures demonstrate that the deformation of vertical members has little effect on the load-bearing capacity of belt trusses and outriggers. The elastoplastic time-history analysis shows that the overall structure under rare earthquake load remains in an elastic state. The influence of the frame shear ratio and frame overturning moment ratio on the proposed model and equivalent mega column model is investigated. It is found that the frame overturning moment ratio is more applicable for judging the resistance of the outer frame against lateral loads. Comparison is made on the variation of these two effects between a classical frame-core tube-outrigger structure and a structure with diagonal braces between super columns under rare earthquakes. The results indicate that plasticity development of the top core cube of the braced structure may be significantly improved.

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