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桥梁建设
桥梁建设

胡贵琼

双月刊

1003-4722

qlkxyjs@public.wh.hb.cn;qljs@ztmbec.com

027-83519506

430034

武汉市建设大道103号

桥梁建设/Journal Bridge ConstructionCSCD北大核心CSTPCDEI
查看更多>>《桥梁建设》创刊于1971年,现由中国铁路工程总公司主管,中铁大桥局集团有限公司主办,中铁大桥局集团武汉桥梁科学研究院有限公司杂志社出版。《桥梁建设》主要报道和交流我国桥梁工作者在科研、设计、施工及监理等方面的实践成果和理论探讨,重点突出桥梁工程领域的新技术、新工艺、新设备、新材料及最新科研成果,为读者提供相关的技术、经济信息。《桥梁建设》连续多年入选“中国科技论文统计源期刊”、“中文核心期刊”及“中国科学引文数据库”,影响因子一直在“铁路运输”、“交通运输”、“公路运输”类期刊中位居前列,并逐年稳步提高。《桥梁建设》具有准确的市场定位和突出的办刊特色,已成为国内桥梁界具有权威性的刊物,在全国桥梁工程领域具有较高的知名度。《桥梁建设》主要栏目:重点工程、科学研究、设计与计算、施工等。《桥梁建设》读者对象:铁路、交通、公路、市政、水利等部门从事桥梁工程及相关专业的勘测、设计、施工、检测、科研、监理等工作的技术、管理人员及相关专业的院校师生。A Briefing on Journal of Bridge ConstructionThe journal of Bridge Construction was initiated in 1971 and is the sole journal that exclusively publishes papers of large and medium bridge engineering in China. The journal mainly reports and communicates practice and theoretic researches of domestic and foreign bridge engineers in aspect of their scientific researches, design, construction and construction supervision with focus on the new techniques, new workmanships, new materials and the latest research findings. The major columns the journal covers are: (1) the latest bridge science and techniques; (2) the design and construction techniques of various notable major bridges and the bridges that have distinctive structural features; (3) the development and application of new bridge engineering materials; (4) the development and application of new bridge construction machinery and equipment; (5) the seismic resistance, vibration damping and corrosion protection techniques of bridges; (6) the inspection, testing, evaluation, maintenance, remedial and strengthening of existing bridges as well as (7) the construction accidents and the corresponding analysis of bridges.The journal of Bridge Construction (international standard serial number: ISSN 1003-4722) is a bimonthly and irregularly the journal may publish two issues of supplements annually. The journal has totally 84 pages (A4) each issue, within which about 20 papers will be published. All titles, abstracts, key words figures,tables and references of the papers are provided bilingually with both Chinese and English languages. The Editorial Office of the journal has recruited an international editorial board that has a number of internationally well-known engineers and professors (See the appendix hereunder). The address of the Editorial Office is 103 Jianshe Avenue, Wuhan City, Hubei Province, China (Postal Code 430034) and the e-mail is qlkxyjs@public.wh.hb.cn. Contribution of the papers should be directed to the Editorial Office.Academically competitive and encyclopedic, and having the clear market positioning and outstanding features of its own, the journal of Bridge Construction, since the year it was initiated, has been one of the journals that attract and are popular among extensive authors and readers in the field of bridge engineering in China. The impact factor of the journal has ranked first in the category of “Railway Transportation”, “Communication Transportation” and “Highway Transportation” of Chinese literatures.The journal has been included as the Statistic Source Journal of Chinese Scientific and Technical Papers and the Chinese Core Journal for years running and has been included and/or listed respectively in the Index of Copurnicus and the Ulrich’s International Periodicals Directory. The publisher of the journal is the Journal Prsss,Bridge Science Research Institute Ltd., China Railway Major Bridge Engineering Group, located in Wuhan, China and the sponsor is China Railway Major Bridge Engineering Group Co., Ltd., a famous and leading bridge engineering contractor that has a long history of over 50 years and has designed and constructed a great many of major bridges over the rivers, valleys and sea.
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    兴联路大通道主航道桥主墩双壁钢围堰施工技术

    张庆伟王成伟王俊野
    142-148页
    查看更多>>摘要:兴联路大通道主航道桥为(165+380+165)m双塔双索面钢-混组合梁斜拉桥,主墩采用哑铃形承台,承台尺寸为62.5 m(横向)×22.6 m(纵向)×7.0 m(高),中间系梁宽11.4 m.其中,51号主墩承台顶、底高程分别为+18.0 m和+11.0 m,河床平均高程为+19.0 m,常水位为+29.8 m.主墩承台采用双壁钢套箱围堰方案施工,51号主墩围堰长66.3 m、宽26.4 m、高24.0 m,壁厚1.8 m,内设3层内支撑,封底混凝土厚3.0 m,围堰抽水水头高度约18.8 m.钢围堰加工前,采用模块化思路,将钢围堰整体竖向分3节、横向分20块;底节钢围堰带钢护筒群整体加工制作,利用2艘800 t浮吊整体吊装下水,利用3艘拖轮将钢围堰带钢护筒群整体浮运至桥位,依次进行水上钢围堰和钢护筒浮态接高;设置水平定位系统,钢围堰精确定位下沉着床,浇筑封底混凝土及隔舱混凝土.该桥承台施工中钢围堰未发生漏水情况,整体质量良好.

    斜拉桥双壁钢套箱围堰模块化钢围堰带钢护筒群加工整体吊装浮态接高施工技术

    欢迎订阅2024年度《世界桥梁》

    《世界桥梁》编辑部
    148页

    桥面板施工顺序对钢-混组合梁桥的受力影响研究及优化

    姜博彭友松权新蕊王刚...
    149-156页
    查看更多>>摘要:为分析桥面板施工顺序对钢-混组合梁桥成桥受力性能的影响并优化现有的桥面板施工顺序,基于钢-混组合梁桥的受力过程,以交通部颁发的装配化钢-混组合梁通用图为依托,选取3×40 m钢-混组合连续梁桥为对象进行研究.采用桥梁博士软件建立钢-混组合梁桥有限元模型,以桥面板施工工序和结构体系转换时间为变量,分析7种桥面板施工顺序下的结构受力性能.结果表明:钢-混组合截面的受力模式分为一次受力状态和分阶段受力状态,其中采用一次受力状态的施工顺序具有施工方便、成桥整体刚度大、钢梁应力小的优点,但存在支点处桥面板拉应力过大的缺点;分阶段受力状态的施工顺序能有效降低支点处桥面板拉应力,但成桥钢梁应力偏大,结构刚度不足.针对采用上述2种受力模式的施工顺序不能兼顾结构成桥性能(钢梁应力、整体刚度等)较优与控制支点桥面板拉应力的问题,提出优化的混合受力状态的施工顺序,该顺序既保留了一次受力状态较优的成桥性能又显著降低了支点处桥面板拉应力,兼顾了上述2种受力模式的优点,可为钢-混组合梁桥的设计和施工提供参考.

    钢-混组合梁桥桥面板结构体系转换施工顺序受力性能有限元法