Parametric Study on Cable-Stayed and Knee-Braced Steel Portal Frames

被引:0
作者
唐柏鉴 [1 ,2 ]
王飞 [1 ]
马珺 [1 ]
机构
[1] School of Architecture and Civil Engineering,Jiangsu University of Science and Technology
[2] Jiangsu Province Key Laboratory of Structure Engineering
关键词
portal frame; prestress; knee brace; cable brace; parametric analysis;
D O I
10.19884/j.1672-5220.2014.04.017
中图分类号
TU391 [钢结构];
学科分类号
081304 ; 081402 ;
摘要
To improve wind resistance capacity of cable-braced steel portal frames,a double-braced portal frame was proposed by adding two pre-stressed knee braces to a cable-braced portal frame. To study the reasonable range of application and method of cable parameter determination for this novel structure,the influences of load condition, span, base constraint, and cable parameters on structural performance were investigated by using the finite element code SAP2000. The results show that pre-stressed knee braces can effectively resist both uplifted and lateral wind loads,so this cablestayed and knee-braced steel portal frame is suitable for large wind.When the vertical load is comparable with the wind load,this novel type of portal frames is suitable for a medium span( 21-48 m). The cables in the cable brace can be determined by structural vertical stiffness,and the cables in the knee brace can be designed as the same as those in the cable-stayed part for the reason that their cross sectional area has only a weak effect on the structure. If no cable fails,the pretension variation of the cable does not affect the stiffness of the portal frame. The cable in the cable brace,working together with the cables in the knee braces,can ease uneven distribution of internal force,and their pretensions can be determined according to actual engineering projects.
引用
收藏
页码:474 / 483
页数:10
相关论文
共 12 条
[1]   大跨度体外索拱形门式刚架设计 [J].
刘志才 ;
靳颖 ;
乔建刚 ;
赵传亮 .
中国市政工程, 2011, (04) :26-29+88
[2]   大跨度索支承实腹式门式刚架钢结构的设计分析 [J].
王元清 ;
李久志 ;
石永久 ;
石小敏 ;
陈宏 .
建筑科学与工程学报, 2008, 25 (04) :73-77
[3]   大跨度索支承实腹式门式刚架钢结构及其应用 [J].
石小敏 ;
张勇 ;
王元清 ;
石永久 ;
陈宏 .
工业建筑, 2003, (02) :68-70
[4]  
Effect of serviceability limits on optimal design of steel portal frames[J] . Duoc T. Phan,James B.P. Lim,Tiku T. Tanyimboh,R. Mark Lawson,Yixiang Xu,Steven Martin,Wei Sha.Journal of Constructional Steel Research . 2013
[5]  
A study of the seismic effects on a portal frame having a hole at the beam-column connection[J] . Tanim Ahmed,Shigeru Shimizu.Thin-Walled Structures . 2011
[6]  
The Comparison of Portal Frame Design by Penalty Function Optimization and Traditional Method[J] . Lin Xian Gen,Xu Yong.Advanced Materials Research . 2012 (452)
[7]  
Research of Optimization Design of Structural Concept about Portal Frame[J] . Li Dong Nan,Wu Jing Yu,Chen Cun En.Applied Mechanics and Materials . 2012 (130)
[8]  
Effects of Initial Imperfection of Bolted End-plate Connections in the Reliability of Steel Portal Frames[J] . H.J. Duan,J.C. Zhao,Z.S. Song.Procedia Engineering . 2011
[9]  
Optimization of Cold-Formed Steel Portal Frame Topography Using Real-Coded Genetic Algorithm[J] . D.T. Phan,J.B.P. Lim,C.S.Y. Ming,T. Tanyimboh,H. Issa,W. Sha.Procedia Engineering . 2011
[10]   Design optimization of steel portal frames [J].
Hernández, S ;
Fontán, AN ;
Perezzán, JC ;
Loscos, P .
ADVANCES IN ENGINEERING SOFTWARE, 2005, 36 (09) :626-633