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Concrete-Filled Steel Tube Arch Bridges in China 被引量:69
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作者 Jielian Zheng Jianjun wang 《Engineering》 2018年第1期143-155,共13页
In the past 20 years, great progress has been achieved in China in the construction of concrete-filled steel tube (CFST) arch bridges and concrete arch bridges with a CFST skeleton. The span of these bridges has bee... In the past 20 years, great progress has been achieved in China in the construction of concrete-filled steel tube (CFST) arch bridges and concrete arch bridges with a CFST skeleton. The span of these bridges has been increasing rapidly, which is rare in the history of bridge development. The large-scale construction of expressways and high-speed railways demands the development of long-span arch bridges, and advances in design and construction techniques have made it possible to construct such bridges. In the present study, the current status, development, and major innovative technologies of CFST arch bridges and concrete arch bridges with a CFST skeleton in China are elaborated. This paper covers the key con- struction technologies of CFST arch bridges, such as the design, manufacture, and installation of steel tube arch trusses, the preparation and pouring of in-tube concrete, and the construction of the world's longest CFST arch bridge-the First Hejiang Yangtze River Bridge. The main construction technologies of rein- forced concrete arch bridges are also presented, which include cable-stayed fastening-hanging cantilever assembly, adjusting the load by means of stay cables, surrounding the concrete for arch rib pouring, and so forth. In addition, the construction of two CFST skeleton concrete arch bridges-the Guangxi Yongning Yong River Bridge and the Yunnan-Guangxi Railway Nanpan River Bridge--is discussed. CFST arch bridges in China have already gained a world-leading position; with the continuous innovation of key technologies, China will become the new leader in promoting the development of arch bridges. 展开更多
关键词 concrete-filled steel tube (CFST) arch BRIDGE steel-reinforced CONCRETE arch BRIDGE CABLE-STAYED fastening-hanging cantileverassembly VACUUM-ASSISTED pouring in-tube CONCRETE Adjusting load by stay cables
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特殊地质条件下大跨度拱桥拱座设计方案比选分析 被引量:2
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作者 师少辉 刘新华 《西部交通科技》 2014年第2期37-40,共4页
针对大跨度上承式拱桥拱座下伏软弱基岩抗推能力不足的问题,可采用扩大基础配置抗推斜桩和竖桩的方式抵抗拱桥巨大推力。文章以总溪河特大桥工程为例,针对其拱座下伏软弱基岩、承载力差的问题,提出10°和45°两种斜桩拱座方案,... 针对大跨度上承式拱桥拱座下伏软弱基岩抗推能力不足的问题,可采用扩大基础配置抗推斜桩和竖桩的方式抵抗拱桥巨大推力。文章以总溪河特大桥工程为例,针对其拱座下伏软弱基岩、承载力差的问题,提出10°和45°两种斜桩拱座方案,并采用有限元计算模型进行分析比选,最终得出45°斜桩方案可以有效减小设计桩长,其受力更为合理。 展开更多
关键词 钢管混凝土拱桥 大跨度拱桥 拱座 斜桩 有限元方法 设计方案
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钦江特大桥钢管拱肋安装施工方案
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作者 韦勇球 《西部交通科技》 2012年第5期22-25,34,共5页
文章针对钦江特大桥桥位处的具体地形状况及其拱肋安装施工特点,提出了钢管拱肋加工制作场地布置方案,介绍了大桥钢管拱肋缆索安装系统构成,阐述了大桥钢管拱肋安装施工的工艺流程及要点。
关键词 钦江特大桥 钢管拱肋 安装施工
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