Ren Junchao, Zhang Qilin, Tong Liping. INFLUENCE OF PRE-TENSION ON STABILITY PERFORMANCE OF SPATIAL STAY STRUCTURE FOR ZHENGZHOU CONFERENCE AND EXHIBITION CENTER[J]. INDUSTRIAL CONSTRUCTION, 2008, 38(5): 100-103. doi: 10.13204/j.gyjz200805024
Citation:
Ren Junchao, Zhang Qilin, Tong Liping. INFLUENCE OF PRE-TENSION ON STABILITY PERFORMANCE OF SPATIAL STAY STRUCTURE FOR ZHENGZHOU CONFERENCE AND EXHIBITION CENTER[J]. INDUSTRIAL CONSTRUCTION , 2008, 38(5): 100-103. doi: 10.13204/j.gyjz200805024
Ren Junchao, Zhang Qilin, Tong Liping. INFLUENCE OF PRE-TENSION ON STABILITY PERFORMANCE OF SPATIAL STAY STRUCTURE FOR ZHENGZHOU CONFERENCE AND EXHIBITION CENTER[J]. INDUSTRIAL CONSTRUCTION, 2008, 38(5): 100-103. doi: 10.13204/j.gyjz200805024
Citation:
Ren Junchao, Zhang Qilin, Tong Liping. INFLUENCE OF PRE-TENSION ON STABILITY PERFORMANCE OF SPATIAL STAY STRUCTURE FOR ZHENGZHOU CONFERENCE AND EXHIBITION CENTER[J]. INDUSTRIAL CONSTRUCTION , 2008, 38(5): 100-103. doi: 10.13204/j.gyjz200805024
INFLUENCE OF PRE-TENSION ON STABILITY PERFORMANCE OF SPATIAL STAY STRUCTURE FOR ZHENGZHOU CONFERENCE AND EXHIBITION CENTER
1.
1. Asia-Pacific Institute of Construction Scientific Information,Beijing 100044;
2.
2. School of Civil Engineering,Tongji University,Shanghai 200092;
3.
3. School of Civil Engineering,Zhengzhou University,Zhengzhou 450002
Received Date: 2007-03-20
Publish Date:
2008-05-20
Abstract
Stay pre-tension truss-string structure is introduced into the steel roof of Zhengzhou International Conference and Exhibition Center. The introduction of pre-tension is turned into one of primary factors which can affect structural stability performances. Based on this, a rectangular steel roof unit as an example is computed with the help of ANSYS soft. The calculative model subjected to deadweight and pre-tension is attempted to simulate structural initial state by choosing eighteen numerical values, ranging from 0 kN to 1 500 kN of pre-tension suspending cables in this system. The relations between pretension and stability safety coefficients and buckling modes are investigated. The results indicate that changes of pre-tension values can seriously affect stablility performances, in particular, rules of variation of stability safety coefficients and buckling modes can not be followed any longer in the design process. It is suggested that some factors can be taken into consideration when effects of pre-tension on stablity are explored. The work of this paper provides a design basis for the pre-tension value of stayed truss-string structures at initial state.
References
[2] Saitoh M. Role of String: Aesthetics and Technology of Tension StructuresPPIABSE Symposium. Kobe: 1998: 699-710
张其林. 索和膜结构. 上海: 同济大学出版社, 2002
[3] Bathe K J. Finit e Element Procedures. Prentice-Hall, Englewood Cliffs, 1996
[4] 张其林, 张 莉, 罗晓群. 预应力索屋盖结构的形状确定. 同济大学学报, 2000, 28(8) : 379-382
[5] 张其林. 索梁体系初始形状和放样状态确定的逆迭代有限单元法PP第九届空间结构学术会议论文集. 萧山: 2000
[6] Barnes M R. Form-Finding, Analysis and Patt erning of Tension StructuresPPThe 3nd Int. Conf. on Space Structures. 1984: 730-736
[7] Lewis W J. The Efficiency of Numerical Methods for the Analysis of Prestressed Net s and Pin-Jointed Frames Structures. Computers and Structures, 1989, 33(3) : 791-800
[8] 陈绍蕃. 钢结构稳定设计指南. 北京: 中国建筑工业出版社, 1996
[9] Sydney University. Design Wind Pressures for the Proposed Zhengzhou Internat ional Convention Exhibit ion Center. 2002
[10] Thompson J M T. Basic Principles in the General Theory of Elastic Stability. Journal of Mechanics and Physics of Solids, 1963(11) : 13-20
[11] 张其林. 预应力钢结构的稳定性能分析. 工业建筑, 2001(增刊) :613-619
Relative Articles
[1] YAN Renzhang, WAN Liyuan, ZHOU Jianting, WANG Shuai. STRUCTURAL DESIGN AND STABILITY ANALYSIS OF A COMPOSITE SPACE STRUCTURE COMPOSED OF CABLE-SUPPORTED ARCH TRUSS AND SINGLE-LAYER RETICULATED SHELL [J]. INDUSTRIAL CONSTRUCTION, 2020, 50(4): 103-110. doi: 10.13204/j.gyjz202004019
[2] HE Yunfei, SHU Ganping, ZHOU Guangen, QIN Ying, ZHOU Xiongliang. RESEARCH ON THE STABILITY OF DOUBLE-SKIN MULTI-CAVITY COMPOSITE WALL WITH STEEL TRUSS UNDER AXIAL COMPRESSION [J]. INDUSTRIAL CONSTRUCTION, 2020, 50(3): 8-12. doi: 10.13204/j.gyjz202003002
[3] WANG Haishan, ZHANG Ke, ZHANG Youhao, ZHU Jingshen, ZHU Boli, GUO Yanlin. EXPERIMENT RESEARCH ON LARGE-SCALE DIAGRID TUBE UNDER CIRCULAR MULTIPOINT LOADING [J]. INDUSTRIAL CONSTRUCTION, 2020, 50(5): 109-113,202. doi: 10.13204/j.gyjz202005018
[5] Wang Qiong, Deng Hua, Zhu Dexi. ANALYSIS OF THE PRETENSION LOSS OF SUSPENDOMES SUBJECTED TO STRONG EARTHQUAKES [J]. INDUSTRIAL CONSTRUCTION, 2015, 45(8): 14-19. doi: 10.13204/j.gyjz201508003
[6] Shao Yahui, Ke Shitang, Ge Yaojun, Zhao Xinyue. THE STRENGTH AND STABILITY ANALYSIS OF SUPER LARGE COOLING TOWERS WITH GAS FLUE [J]. INDUSTRIAL CONSTRUCTION, 2014, 44(03): 80-84. doi: 10.13204/j.gyjz201403018
[7] Wang Chungang, Zhang Naiwen, Ma Ping. A SIMPLIFIED METHOD FOR CALCULATING ELASTIC DISTORTIONAL BUCKLING STRESS OF CHANNELS WITH COMPLEX EDGE STIFFENERS AND INTERMEDIATE STIFFENERS UNDER AXIAL COMPRESSIVE LOAD [J]. INDUSTRIAL CONSTRUCTION, 2014, 44(05): 116-121. doi: 10.13204/j.gyjz201405026
[8] Ban Huiyong, Shi Gang, Shi Yongjiu, Wang Yuanqing. EFFECT OF INITIAL IMPERFECTIONS ON OVERALL BUCKLING BEHAVIOR OF HIGH STRENGTH STEEL COLUMNS [J]. INDUSTRIAL CONSTRUCTION, 2012, 42(1): 37-45,50. doi: 10.13204/j.gyjz201201007
[9] Wang Yuanqing, Gao Bo, Dai Guoxin, Shi Yongjiu. INFLUENCES OF RESIDUAL STRESS ON INELASTIC LATERAL- TORSIONAL BUCKLING OF WELDED I- BEAMS [J]. INDUSTRIAL CONSTRUCTION, 2012, 42(5): 51-54. doi: 10.13204/j.gyjz2011205008
[10] Wang Chungang, Song Daijun, Zhang Zhuangnan. STABILITY BEHAVIOR OF COLD-FORMED THIN-WALLED STEEL FIXED-ENDED CHANNELS WITH COMPLEX EDGE STIFFENERS UNDER AXIAL COMPRESSIVE LOAD [J]. INDUSTRIAL CONSTRUCTION, 2012, 42(2): 120-124. doi: 10.13204/j.gyjz201202027
[11] Shen Qin, Hu Changming, Che Jialing, Zeng Fankui, Yan Xin. NUMERICAL ANALYSIS OF THE IMPACT ERECTING PARAMETERS ON OVERALL STABILITY OF COUPLER STEEL TUBE FALSEWORK [J]. INDUSTRIAL CONSTRUCTION, 2010, 40(2): 7-11. doi: 10.13204/j.gyjz201002002
[12] Hu Changming, Zeng Fankui, Wang Jing, Wang Xia. INFLUENCE OF GENERALIZED INITIAL IMPERFECTIONS ON STEEL CONSTRUCTION CONNECTED WITH FASTENERS [J]. INDUSTRIAL CONSTRUCTION, 2010, 40(2): 17-19,27. doi: 10.13204/j.gyjz201002004
[13] Liu Hongbo, Chen Zhihua, Zhou Ting. A NEW SPATIAL STRUCTURES:CABLE SUPPORTED ARCH-DOME STRUCTURES [J]. INDUSTRIAL CONSTRUCTION, 2010, 40(8): 10-12. doi: 10.13204/j.gyjz201008003
[14] Zhang Enuo, Guo Yanlin. COMPARISON OF STABILITY CAPACITY AND ECONOMIC PERFORMANCE BETWEEN LIPPED H-SECTION MEMBERS AND H-SECTION MEMBERS [J]. INDUSTRIAL CONSTRUCTION, 2009, 39(9): 28-31. doi: 10.13204/j.gyjz200909005
[15] Xiao Weimin, Sun Lianhong, Chai Ming. ANALYSIS OF THE GEOMETRIC STABILITY,LOAD TRANSFER PATHS AND STRESS SENSITIVITY OF SPACE TRUSS [J]. INDUSTRIAL CONSTRUCTION, 2008, 38(9): 22-26. doi: 10.13204/j.gyjz200809008
[16] Dai Na-xin, Huang Dong-yang, Guo Jian. RENEWAL METHOD OF CABLE STIFFNESS FOR INITIAL SHAPE ANALYSIS OF STRING BEAMS [J]. INDUSTRIAL CONSTRUCTION, 2007, 37(11): 91-93. doi: 10.13204/j.gyjz200711025
[17] Gao Li-ya, Deng Chang-gen, He Ji-ping. STUDY ON INTEGRAL STABILITY OF HOMEMADE ROLLED H-SECTION BEAMS -APPLICABILITY OF CALCULATION PRINCIPLE OF STABILITY COEFFICIENT TO HOMEMADE HOT-ROLLED H-SECTION BEAMS [J]. INDUSTRIAL CONSTRUCTION, 2006, 36(10): 75-78. doi: 10.13204/j.gyjz200610021
Proportional views
Created with Highcharts 5.0.7 Amount of access Chart context menu Abstract Views, HTML Views, PDF Downloads Statistics Abstract Views HTML Views PDF Downloads 2024-05 2024-06 2024-07 2024-08 2024-09 2024-10 2024-11 2024-12 2025-01 2025-02 2025-03 2025-04 0 2 4 6 8
Created with Highcharts 5.0.7 Chart context menu Access Class Distribution FULLTEXT : 18.0 % FULLTEXT : 18.0 % META : 82.0 % META : 82.0 % FULLTEXT META
Created with Highcharts 5.0.7 Chart context menu Access Area Distribution 其他 : 8.0 % 其他 : 8.0 % 北京 : 18.0 % 北京 : 18.0 % 台州 : 4.0 % 台州 : 4.0 % 张家口 : 10.0 % 张家口 : 10.0 % 杭州 : 4.0 % 杭州 : 4.0 % 湖州 : 2.0 % 湖州 : 2.0 % 芒廷维尤 : 32.0 % 芒廷维尤 : 32.0 % 衢州 : 4.0 % 衢州 : 4.0 % 西宁 : 16.0 % 西宁 : 16.0 % 重庆 : 2.0 % 重庆 : 2.0 % 其他 北京 台州 张家口 杭州 湖州 芒廷维尤 衢州 西宁 重庆