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混合梁桥大节段中跨钢梁吊装与合龙技术--以龙翔大桥为例 被引量:2
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作者 吴月红 陈搏 《科技和产业》 2023年第7期241-247,共7页
龙翔大桥主桥是采用大节段钢梁作为跨中结合段的大跨径双主跨刚构连续梁组合体系。依托龙翔大桥主桥施工提出一种新型提升系统,实现了悬臂梁施工、钢混结合段吊装、大节段跨中钢梁吊装3个施工阶段的快速转换。采用有限元法分析提升系统... 龙翔大桥主桥是采用大节段钢梁作为跨中结合段的大跨径双主跨刚构连续梁组合体系。依托龙翔大桥主桥施工提出一种新型提升系统,实现了悬臂梁施工、钢混结合段吊装、大节段跨中钢梁吊装3个施工阶段的快速转换。采用有限元法分析提升系统在施工各阶段的强度、刚度及稳定性验算,并与大节段跨中钢梁吊装时的位移实测数据进行对比,验证了提升系统能满足施工效率、安全和质量的要求,为类似桥梁在施工和合龙过程中提供了参考经验。 展开更多
关键词 刚构连续梁桥 大节段钢梁吊装 合龙技术 桥梁施工
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混合梁桥的中跨钢梁吊装及合龙技术分析
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作者 贺克忠 《交通世界》 2024年第31期162-164,共3页
为克服大节段钢箱梁结合段悬臂梁施工、钢混结合段吊装、大节段跨中钢梁吊装施工难度大、干扰多、转换操作复杂的工程难点,以某公路大桥工程为依托,研究了混合梁桥的中跨钢梁吊装及合龙施工技术,提出了一种新型主桥施工提升系统,有效克... 为克服大节段钢箱梁结合段悬臂梁施工、钢混结合段吊装、大节段跨中钢梁吊装施工难度大、干扰多、转换操作复杂的工程难点,以某公路大桥工程为依托,研究了混合梁桥的中跨钢梁吊装及合龙施工技术,提出了一种新型主桥施工提升系统,有效克服了各工序施工干扰大、转换操作复杂的工程难点,通过有限元模拟与实地测量对比,验证了该主桥提升系统的工艺优势,可为同类桥梁施工提供参考。 展开更多
关键词 刚构连续梁桥 大节段钢梁吊装 合龙技术
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Geometric state transfer method for construction control of a large-segment steel box girder with hoisting installation 被引量:6
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作者 Jin-feng WANG Hua-wei XIANG +2 位作者 Jiang-tao ZHANG Tian-mei WU Rong-qiao XU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第5期382-391,共10页
This paper aims to address the problem of geometric state control of large-segment steel box girders in offshore hoisting during the construction of large-span bridges. First, the geometric state control indexes of a ... This paper aims to address the problem of geometric state control of large-segment steel box girders in offshore hoisting during the construction of large-span bridges. First, the geometric state control indexes of a large-segment steel box girder are determined, such as the manufacturing parameters of the top and bottom slabs, the width of the annular joint, and the support position. Second, the geometric state equations and state transfer matrixes of large-segment steel box girders under different conditions are deduced by taking the mileage and elevation of control points as basic state variables. In application of the geometric state transfer method in the construction control of the Hong Kong-Zhuhai-Macao Bridge, the width of the annular joint and the position parameters for the support of the large-segment steel box girder are predicted precisely. Moreover, the manufacturing parameters of the top and bottom slabs of the steel box girders are calculated reliably. The measured values show that the width of the annular joint is basically the same with the difference of less than 2 mm, the eccentricity of bridge support is less than 20 mm, and the elevation error of the bridge deck is within-10 mm to +15 mm, which meets the construction accuracy. Using the geometric state transfer method, the rapid and accurate installation of the Hong Kong-Zhuhai-Macao Bridge has been realized, demonstrating that the precise control of the geometric state of a steel box girder with ectopic installation and multi-state transition can be realized by using the geometric state transfer method. 展开更多
关键词 Large-segment steel box girder Offshore hoisting Construction control Geometric state Transfer matrix
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