人行钢桁架桥动力特性及反应谱分析
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摘要
为研究人行钢桁架桥动力特性及在地震作用下的动力响应,运用ANSYS对某人行钢桁架桥进行模态分析,用反应谱分析法对其进行三向激励地震响应分析,得到关键截面及桁架杆件的动力响应。分析结果表明:人行钢桁架桥较铁路钢桁架桥更易发生振动,且扭转变形出现较早;在地震反应谱作用下,人行钢桁架桥较易出现横向及竖向位移,且跨中位移响应较大,上弦杆位移响应较下弦杆大。
In order to study the characteristics of pedestrian steel truss bridge vibration and dynamic response under seismic action,a finite element model of the bridge is built by ANSYS to conduct modal analysis and response spectrum analysis,and the peak value responds of displacement at key sections are obtained.The results indicate that pedestrian steel truss bridge is more susceptible to vibration than railway truss bridge,and the torsion deformation appears earlier;pedestrian steel truss bridge is prone to the horizontal and vertical displacement,and the mid-span displacement response is larger with the top chord of displacement response than the lower chord large in seismic response spectrum.The conclusions can provide the reference basis for the seismic design of pedestrian steel truss bridge.
引文
[1]范旭辉.钢箱梁及钢桁架城市人行天桥对比分析[J].林业科技情报,2012,44(4):80-81.
    [2]姜丽梅,江阿兰.基于ANSYS对钢桁梁桥的静动力分析[J].低温建筑技术,2013(1):40-42.
    [3]刘月雨,李自林.钢桁架桥梁的地震响应分析[J].天津城市建设学院学报,2008,14(3):168-170.
    [4]王景波.应用反映谱法分析淳安南浦大桥抗震性能[J].黑龙江工程学院学报:自然科学版,2008,22(2):10-11.
    [5]傅志方.模态分析理论与应用[M].上海:上海交通大学出版社,2000.
    [6]李廉锟.结构力学[M].北京:高等教育出版社,2010.
    [7]北京市市政工程研究院.CJJ 69-95城市人行天桥与人行地道技术规范[S].北京:中国建筑工业出版社,1996.
    [8]重庆交通科研设计院.JTG/T B02-01-2008公路桥梁抗震设计细则[S].北京:人民交通出版社,2008.
    [9]范立础.桥梁抗震[M].上海:同济大学出版社,2006.
    [10]陈琦.荷麻溪大桥动力特性与地震反应谱分析[J].铁道工程学报,2010(5):22-25.

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