The purpose of this paper is to discuss the suitability of out-of-codes tall slab-column and shearwall structure and to popularize the structure in seismic region.In the research,flat-plate floor was used in slab-colu...The purpose of this paper is to discuss the suitability of out-of-codes tall slab-column and shearwall structure and to popularize the structure in seismic region.In the research,flat-plate floor was used in slab-column and shearwall structure in the practical engineering,the key parameters of slab-column and shearwall structure and frame-shearwall structure such as deflection,punching shear behavior,story drift and capability curve were worked out by static plastic analysis,elastic-plastic time history analysis and pushover analysis,then the suitability of out-of-codes tall slab-column and shearwall structure was evaluated.The results show that the out-of-codes tall slab-column and shearwall structure studies could satisfy the require of deflection and punching shear behavior,the story drift under 7 degree expected rare earthquake waves could satisfy the limit value in the codes and the seismic design spectrum was crossed by the capability curve of the structure and the structure could not collapse.The conclusion is that slab-column and shearwall structure with reasonable design built in Ⅱ soil site of intensity 7 seismic fortification zone can be designed higher than the limit height in the codes.展开更多
文摘The purpose of this paper is to discuss the suitability of out-of-codes tall slab-column and shearwall structure and to popularize the structure in seismic region.In the research,flat-plate floor was used in slab-column and shearwall structure in the practical engineering,the key parameters of slab-column and shearwall structure and frame-shearwall structure such as deflection,punching shear behavior,story drift and capability curve were worked out by static plastic analysis,elastic-plastic time history analysis and pushover analysis,then the suitability of out-of-codes tall slab-column and shearwall structure was evaluated.The results show that the out-of-codes tall slab-column and shearwall structure studies could satisfy the require of deflection and punching shear behavior,the story drift under 7 degree expected rare earthquake waves could satisfy the limit value in the codes and the seismic design spectrum was crossed by the capability curve of the structure and the structure could not collapse.The conclusion is that slab-column and shearwall structure with reasonable design built in Ⅱ soil site of intensity 7 seismic fortification zone can be designed higher than the limit height in the codes.
文摘目的探讨相关规范的限高要求,推广板柱-剪力墙结构在抗震区应用.方法通过理论分析,若两结构的建造高度相同,在相同水平荷载作用下若具有同样的侧移,板柱-剪力墙结构中,剪力墙的等效抗弯刚度约为框架-剪力墙结构的1.71倍;剪力墙数量相同,最大层间位移角相等时,板柱-剪力墙结构的高度约为框架-剪力墙结构的0.76倍,进而通过框架-剪力墙结构的适用高度反推板柱-剪力墙结构的适用高度,最后通过有限元分析对其进行验证.结果在笔者所提出的适用高度范围内,合理设计的板柱-剪力墙结构,其抗侧刚度满足要求,板柱节点在竖向剪力和不平衡弯矩的共同作用下不破坏,结构在罕遇地震作用下不倒塌.结论板柱-剪力墙结构在6、7、8度区适用的最大高度可调整为100 m、90 m、75 m.