纸质出版:2016
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[1]闫长旺,王征,贾金青,刘曙光,李旭,段连钧.关键构件失效后钢骨超高强混凝土框架抗连续倒塌能力分析[J].防灾减灾工程学报,2016,36(05):730-736.
闫长旺, 王征, 贾金青, et al. Analysis of Collapse Resistant Capability of Steel Reinforced Ultra High Strength Concrete Frame after Key Component Failure[J]. 2016, 36(5): 730-736.
[1]闫长旺,王征,贾金青,刘曙光,李旭,段连钧.关键构件失效后钢骨超高强混凝土框架抗连续倒塌能力分析[J].防灾减灾工程学报,2016,36(05):730-736. DOI: 10.13409/j.cnki.jdpme.2016.05.007.
闫长旺, 王征, 贾金青, et al. Analysis of Collapse Resistant Capability of Steel Reinforced Ultra High Strength Concrete Frame after Key Component Failure[J]. 2016, 36(5): 730-736. DOI: 10.13409/j.cnki.jdpme.2016.05.007.
基于汶川地震后钢筋混凝土框架震害调查结果
选取首层角柱区域(包括框架柱、与该柱相连的节点)为关键构件
利用有限元分析软件ABAQUS
以抽除点位移、相邻构件轴向荷载为参考数据
对关键构件失效后钢骨超高强混凝土框架抗连续倒塌能力进行分析
讨论了建筑高度、地震波作用方向、有无填充墙、框架柱混凝土强度等级对剩余结构抗连续倒塌能力的影响。结果表明:1随着建筑高度的增加
框架结构抽除点处竖向位移的最大值略下降
首层相邻柱轴向荷载增加明显
框架结构易发生连续倒塌;2框架结构首层角柱区域失效后
Y向地震波作用下剩余结构震荡较大
抗震性能降低
易发生连续倒塌;3设置填充墙的框架结构
抽除点位置处竖向位移较小
结构整体的震荡不大
相邻构件的轴向荷载增长幅度减小
一定程度上提高了框架结构的抗连续倒塌能力;4框架柱使用强度等级较高的混凝土
一定程度上可以减小抽除位置处竖向位移
采用内置钢骨的超高强混凝土柱可提高框架结构抗连续倒塌能力。
Based on the earthquake damage investigation results of reinforced concrete frame in the Wenchuan earthquake
the corner column area of the first floor including frame column and adjacent joint is chosen as the key component.The finite element analysis software ABAQUS is used.The displacement at the removed position and axial load of the adjacent column are selected as reference data
and the collapse resistant capability of the steel reinforced ultra high strength concrete(SRUHSC)frame after key component failure is analyzed.At the same time
effects of building height
earthquake wave direction
infilled wall
and strength grade of column concrete on the collapse resistant capability of residual structure are discussed.The results show that:(1)Vertical displacement at the removed position falls slightly
axial load of the adjacent column increases significantly
and frame structure collapse will happen easily with the increase of building height.(2)The shake of the residual structure becomes more obvious
seismic performance reduces
and the collapse will appear easily under the Y direction earthquake ground motion after the corner column area failures.(3)Vertical displacement at the removed position is small
the shake becomes insignificant
axial load of the adjacent column grows slowly
and the collapse resistant capability can be improved after the infilled wall is installed in the frame structure.(4)The vertical displacement at the removed position can be decreased and the collapse resistant capability can be increased after higher strength concrete column is used in frame structure
especially when the steel reinforces the ultra high strength concrete column.
钢骨超高强混凝土框架结构地震弹塑性分析 [J]. 闫长旺,李旭,刘曙光,贾金青,段连均. 防灾减灾工程学报 . 2016(02)
节点对RC框架结构抗连续倒塌能力影响研究 [J]. 李爽,赵颖,翟长海,谢礼立. 工程力学 . 2012(12)
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汶川地震钢筋混凝土框架结构震害调查与启示 [J]. 霍林生,李宏男,肖诗云,王东升. 大连理工大学学报 . 2009(05)
反复荷载下混凝土剪力墙非线性有限元分析 [J]. 吴晓涵,吕西林. 同济大学学报(自然科学版) . 1996(02)
超高强混凝土组合柱抗震性能的试验研究 [D]. 姜睿. 大连理工大学 2007
结构抗连续倒塌关键构件的评价方法及敏感性分析 [D]. 郑阳. 浙江大学 2013
JGJ 138-2001. 型钢混凝土组合结构技术规程 [S]. 2001
动力弹塑性时程分析技术在建筑结构抗震设计中的应用[M]. 上海科学技术出版社 , 华东建筑设计研究院有限公司技术中心, 2013
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