安庆长江铁路大桥主桥无索区钢桁梁架设技术
详细信息   下载全文 | 推荐本文 |
摘要
安庆长江铁路大桥主桥为双塔三索面钢桁梁斜拉桥,钢桁梁采用N形平行桁式,3片主桁。主桥无索区钢桁梁共12个节间,总重6 041.5t,采用散拼法安装,其中6号至7号墩间8个节间钢桁梁在满布膺架上安装,6号至5号墩间4个节间钢桁梁采用悬臂安装。膺架墩对应每个钢桁梁节点布置,膺架共设置7排临时支墩,每排支墩由6根钢管桩组成,通过振动锤插打并接长钢管桩。利用200t浮吊反复站位上、下游的方法起吊拼装钢桁梁,完成无索区钢桁梁架设。该桥钢桁梁架设于2011年10月15日完成,经检测无索区钢桁梁的线形及应力均符合设计要求。
        The main bridge of Anqing Changjiang River Railway Bridge is a steel truss girder cable-stayed bridge with double pylons and triple cable planes.The steel truss girder of the bridge is designed as the parallel truss type of N-shape and is composed of three main trusses.The girder of the main bridge in the areas without stay cables has 12 panels,totally weighing 6 041.5 t.The panels of the girder were installed by the piece-by-piece assembling method,of which the 8 panels between the Pier No.6 and Pier No.7 were installed on staging and the 4 panels between the Pier No.6 and Pier No.5 were installed by the cantilever method.The piers of the staging were arranged at the locations corresponding to each panel point of the girder and totally 7 arrays of the temporary piers were arranged.In each array of the piers,there were 6 steel pipe piles and the piles were driven in and extended by the vibrating hammer.The panels of the girder were lifted and installed and the erection of the girder was completed by the repeated utilization of the 200 t capacity floating crane alternatively placed at the downstream and upstream sides.The erection of the steel truss girder of the bridge was completed on October 15,2011 and the inspection of the erection proved that the geometric shapes and stress of the girder in the areas without stay cables could accord with the design requirements.
引文
[1]周孟波,秦顺全.芜湖长江大桥大跨度低塔斜拉桥板桁结合结构建造技术[M].北京:中国铁道出版社,2004.(ZHOU Meng-bo,QIN Shun-quan.ConstructionTechniques for Plate and Truss Composite Structure ofLong Span Extradosed Bridge of Wuhu ChangjiangRiver Bridge[M].Beijing:China Railway PublishingHouse,2004.in Chinese)
    [2]胡汉舟,文武松,秦顺全,等.京沪高速铁路南京大胜关长江大桥技术总结[M].北京:中国铁道出版社,2011.(HU Han-zhou,WEN Wu-song,QIN Shun-quan,etal.Technical Summary of Nanjing DashengguanChangjiang River Bridge on Beijing-Shanghai High-Speed Railway[M].Beijing:China Railway PublishingHouse,2011.in Chinese)
    [3]TB10002.2-2005,铁路桥梁钢结构设计规范[S].(TB 10002.2-2005,Code for Design on Steel Structureof Railway Bridge[S].)
    [4]王常礼.浅谈钢梁架设施工技术[J].中国新技术新产品,2012,(10):77.(WANG Chang-li.Brief Discussion on ConstructionTechniques for Erection of Steel Girder[J].NewTechnology&New Products of China,2012,(10):77.in Chinese)
    [5]王政兵,李红旗.万州长江大桥钢梁架设方案及关键技术[J].桥梁建设,2003,(S1):1-3.(WANG Zheng-bing,LI Hong-qi.Erection Schemesand Key Techniques for Steel Girder of WanzhouChangjiang River Bridge[J].Bridge Construction,2003,(S1):1-3.in Chinese)
    [6]李德坤,朱云翔,李芳军.长寿长江大桥钢梁架设方案及关键技术研究[J].铁道标准设计,2003,(S1):122-124.(LI De-kun,ZHU Yun-xiang,LI Fang-jun.Study ofErection Schemes and Key Techniques for Steel Girderof Changshou Changjiang River Bridge[J].RailwayStandard Design,2003,(S1):122-124.in Chinese)
    [7]王东辉,覃勇刚.南京大胜关长江大桥钢梁架设及关键技术[J].桥梁建设,2009,(3):5-8.(WANG Dong-hui,QIN Yong-gang.Key Techniquesfor Erection of Steel Truss Girders of DashengguanChangjiang River Bridge in Nanjing[J].Bridge Con-struction,2009,(3):5-8.in Chinese)
    [8]靳春尚,王殿永,刘康,等.粉房湾长江大桥钢桁梁支架拼装施工技术[J].桥梁建设,2012,42(S1):76-80.(JIN Chun-shang,WANG Dian-yong,LIU Kang,etal.Construction Techniques for Assembling of SteelTruss Girder of Fenfangwan Changjiang River Bridgeon Scaffolding[J].Bridge Construction,2012,42(S1):76-80.in Chinese)
    [9]铁建设[2010]241号,高速铁路桥涵工程施工技术指南[S].(TJS[2010]No.241,Guide to Construction Tech-niques of High-Speed Railway Bridge and Culvert[S].)
    [10]汪芳进.武广客运专线东平水道桥钢梁架设施工设计[J].铁道标准设计,2009,(4):50-52.(WANG Fang-jin.Construction Design on Erection of Steel Girder of Dongping Waterway Bridge on Wuhan-Guangzhou Passenger Dedicated Railway[J].Railway Standard Design,2009,(4):50-52.in Chinese)
目录

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700