Please wait a minute...
J4  2010, Vol. 44 Issue (12): 2332-2336    DOI: 10.3785/j.issn.1008-973X.2010.12.016
土木工程     
空间钢结构临时支撑布置的应变能跟踪算法
罗尧治, 娄荣, 刘海峰
浙江大学 空间结构研究中心, 浙江 杭州 310058
Strain energy tracking algorithm for falsework layout
of spatial steel structures
LUO Yao-zhi, LOU Rong, LIU Hai-feng
Center of Space Structure Research, Zhejiang University, Hangzhou 310058, China
 全文: PDF  HTML
摘要:

针对传统经验方法用于确定空间钢结构临时支撑体系布置方案时的不合理性,提出一种基于小生境遗传算法的优化算法,该算法以指数尺度变换后的结构总应变能为优化目标函数,采用格雷编码作为染色体的编码方式,对于规则的搜索区域,以连续的空间位置作为遗传算法的决策变量;对于不规则的搜索区域,以离散的空间节点作为决策变量,在进化过程中引入自适应的遗传算子和改进的最优个体保存策略;模拟“鸟巢”结构的一榀主桁架,验证了算法的有效性;研究矩形平板网架和某异形网壳的最优临时支撑布置方案.分析表明:应变能综合反映了结构的受力性能,该应变能跟踪算法对空间钢结构施工过程中临时支撑体系方案确定提供了科学的依据.

Abstract:

 Due to the irrationality of traditional methods for layout of falsework systems in spatial steel structures, an algorithm based on niche genetic algorithm was proposed. The strain energy of the structural system was exponentially rescaled and taken as optimization objective function. Chromosome was represented by Gray code. When the search region was regular, continuous spatial location was taken as decision variable; otherwise, discrete node was taken as decision variable. Self-adaptive genetic operator and improved elitist strategy were introduced into the evolution. The effectiveness of the proposed algorithm was verified by a simulation example on a main truss of "bird nest". Analysis of the optimum falsework layout of plane grid structures and deformed latticed shell structures indicates that the strain energy represents the stress of structures.

出版日期: 2010-12-01
:  TU 394  
基金资助:

国家自然科学基金资助项目(50378083),国家“863”高技术研究发展计划研究资助项目(2007AA04Z441).

作者简介: 罗尧治(1966-),男,浙江慈溪人,教授,博导,从事空间结构研究.E-mail:luoyz@zju.edu.cn
服务  
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章  

引用本文:

罗尧治, 娄荣, 刘海峰. 空间钢结构临时支撑布置的应变能跟踪算法[J]. J4, 2010, 44(12): 2332-2336.

LUO Yao-zhi, LOU Rong, LIU Hai-feng. Strain energy tracking algorithm for falsework layout
of spatial steel structures. J4, 2010, 44(12): 2332-2336.

链接本文:

http://www.zjujournals.com/eng/CN/10.3785/j.issn.1008-973X.2010.12.016        http://www.zjujournals.com/eng/CN/Y2010/V44/I12/2332

[1] 郭彦林,郭宇飞,高巍,等.国家体育场钢结构屋盖落架过程模拟分析[J].施工技术,2006, 35(l2):36-40.
GUO Yanlin, GUOYufei, GAO Wei, et al. Simulating analysis of removing temporary supports for steel structural roof in national stadium [J].Construction Technology, 2006,35 (12): 36-40.
[2] 罗尧治,赖达东,符刚,等.国家大剧院钢壳体施工支撑体系的结构选型与设计[J].建筑结构,2003,33(11): 61-62.
LUO Yaozhi,LAI Dongda,FU Gang, et al. Types choice and optimization design for the construction support system of the national grand theatre domes shell [J].Building Structure, 2003, 33(11): 61-62.
[3] 张冰.大跨度空间结构建造过程中吊点和支撑位置合理性研究[D].杭州:浙江大学,2006.
ZHANG Bing. Research on layout of hoisting and temporary support in the construction process of longspan space structures [D]. Hangzhou: Zhejiang University, 2006.
[4] 郭彦林,刘学武.大跨度钢结构屋盖拆撑过程数值模拟的千斤顶间隙单元法[J].西安建筑科技大学学报:自然科学版,2008, 40(l): 1-7.
GUO Yanlin, LIU Xuewu.Jackgap element model for numerical simulation of removing temporary supports of largespan steel structural roof [J].Journal of Xi′an University of Architecture & Technology: Natural Science Edition, 2008, 40(l): 1-7.
[5] OHSAKI M. Genetic algorithm for topology optimization of trusses [J].Computer & Structures, 1995, 57: 219225.
[6] 孙仁范,牟在根,颜谋,等.遗传算法在桁架结构优化设计中的应用[J].建筑结构学报,2004,25(3): 75-79.
SUN Renfan, MU Zaigen, YAN Mou, et al. Application of genetic algorithms in optimums design of truss structures [J]. Journal of Building Structures, 2004, 25(3): 75-79.
[7] 周明,孙树栋.遗传算法原理及应用[M].北京:国防工业出版社,1999: 34-37.
[8] 毕惟红,任红民,吴庆标.一种新的遗传算法最优保存策略[J].浙江大学学报:理学版,2006,33(1): 32-35.
BI Weihong, REN Hongmin, WU Qingbiao. A new elitist strategy in genetic algorithms [J]. Journal of Zhejiang University: Science Edition, 2006, 33(1): 32-35.

[1] 朱明亮,董石麟. 基于向量式有限元的弦支穹顶失效分析[J]. J4, 2012, 46(9): 1611-1618.
[2] 娄荣,罗尧治,郑君华,刘海峰. 索网张力结构的张拉控制及多目标优化计算[J]. J4, 2011, 45(3): 539-543.
[3] 许贤, 罗尧治, 沈雁彬. 张拉整体结构的非线性主动控制[J]. J4, 2010, 44(10): 1979-1984.