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Research review on steel–concrete composite joint of railway hybrid girder cable-stayed bridges 被引量:2
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作者 Zhou Shi Jiachang Gu +1 位作者 Yongcong Zhou Ying Zhang 《Railway Sciences》 2022年第2期241-259,共19页
Purpose–This study aims to research the development trend,research status,research results and existing problems of the steel–concrete composite joint of railway long-span hybrid girder cable-stayed bridge.Design/me... Purpose–This study aims to research the development trend,research status,research results and existing problems of the steel–concrete composite joint of railway long-span hybrid girder cable-stayed bridge.Design/methodology/approach–Based on the investigation and analysis of the development history,structure form,structural parameters,stress characteristics,shear connector stress state,force transmission mechanism,and fatigue performance,aiming at the steel–concrete composite joint of railway long-span hybrid girder cable-stayed bridge,the development trend,research status,research results and existing problems are expounded.Findings–The shear-compression composite joint has become the main form in practice,featuring shortened length and simplified structure.The length of composite joints between 1.5 and 3.0 m has no significant effect on the stress and force transmission laws of the main girder.The reasonable thickness of the bearing plate is 40–70 mm.The calculation theory and simplified calculation formula of the overall bearing capacity,the nonuniformity and distribution laws of the shear connector,the force transferring ratio of steel and concrete components,the fatigue failure mechanism and structural parameters effects are the focus of the research study.Originality/value–This study puts forward some suggestions and prospects for the structural design and theoretical research of the steel–concrete composite joint of railway long-span hybrid girder cable-stayed bridge. 展开更多
关键词 RAILWAY hybrid girder cable-stayed bridge Steel-concrete composite joint STRUCTURE Stress characteristics REVIEW
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Development of Optimal Structural System for Hybrid Cable-Stayed Bridges Using Ultra High Performance Concrete 被引量:1
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作者 Hee Seok Kim Young Jin Kim +1 位作者 Won Jong Chin Hyejin Yoon 《Engineering(科研)》 2013年第9期720-728,共9页
This study developed an optimal structural system for the hybrid cable-stayed bridge expected to have a durable lifetime of 200 years and of which major structural members are made of ultra high performance concrete (... This study developed an optimal structural system for the hybrid cable-stayed bridge expected to have a durable lifetime of 200 years and of which major structural members are made of ultra high performance concrete (UHPC) with 200 MPa-class compressive strength. This innovative cable-stayed bridge system makes it possible to reduce each of the construction and maintenance costs by 20% compared to the conventional concrete cable-stayed bridge by improving significantly the weight and durability of the bridge. Therefore, detail design is carried out considering a real 800 m cable-stayed bridge and the optimal structure of the hybrid cable-stayed bridge is proposed and verified. 展开更多
关键词 hybrid cable-stayed bridge Ultra High Performance Concrete (UHPC) OPTIMAL Structural System DURABILITY
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Influence of Girder Vibration on Cable Damper's Performance of A Cable-stayed Bridge
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作者 Dong Liang Yong Chen 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2014年第1期109-114,共6页
The model combined by cable,girder and damper is founded to study the influence of girder vibration on cable damper 's performance of a cable-stayed bridge. The complex mode method and nondimensionalization are us... The model combined by cable,girder and damper is founded to study the influence of girder vibration on cable damper 's performance of a cable-stayed bridge. The complex mode method and nondimensionalization are used to analyze the relationship between the girder's parameters and the performance of cable-related damper. The results indicate that the performance of cable-related damper will decrease greatly when the girder frequencies are near the frequencies of cable. The smaller absolute displacement of damper's piston caused by the very small vibration phase shift of girder and cable is the physical cause of the negative impact mentioned above. 展开更多
关键词 cable-stayed bridge vibration mitigation of cable girder vibration modal damping complex mode method cause analysis
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Closure technique for the hybrid girder cable stayed bridge of Edong Bridge
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作者 Liu Minghu Tan Hao +1 位作者 Xu GuoPing Zhao Canhui 《Engineering Sciences》 EI 2012年第4期51-56,共6页
Based on Edong Yangtze River Bridge, which is the second longest hybrid girder cable stayed bridge with 926 m long main span, the influencing factors and crucial techniques of the main span closure method for long spa... Based on Edong Yangtze River Bridge, which is the second longest hybrid girder cable stayed bridge with 926 m long main span, the influencing factors and crucial techniques of the main span closure method for long span hybrid girder cable stayed bridge are studied. After theoretical analysis, numerical evaluation and practical test, the loading assistant closure method is employed in Edong Yangtze River Bridge. The loading assistant closure method, with better thermal adaptability and less influence on bridge line and the forced status, can meet the requirements of the unstressed state control method. Based on the mentioned advantages, the loading assistant closure method is applicable to long span hybrid girder cable stayed bridges. The conclusion can provide a reference for the further design of the similar brid^es. 展开更多
关键词 Edong bridge hybrid girder cable stayed bridge closure technique loading assistant closure method unstressed state control method
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Damage Detection for Long-Span Cable-Stayed Bridge 被引量:1
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作者 赵玲 李爱群 +1 位作者 缪长青 汪永兰 《Journal of Southwest Jiaotong University(English Edition)》 2006年第1期63-72,共10页
Based on the updated finite-element model of a cable-stayed bridge, this study investigates the technique of identifying damage existing in cable or girder by means of numerical simulation. The modal analysis is perfo... Based on the updated finite-element model of a cable-stayed bridge, this study investigates the technique of identifying damage existing in cable or girder by means of numerical simulation. The modal analysis is performed to identify the changes in modal fiequencies and curvatures caused by damage, and the static analysis is executed to detect the influence of damage on cable force. The results indicate a relatively significant decrease in frequencies of lower vertical bending modes due to the damage in cable and little change of frequencies due to damage in girder. Different sensitivities to the location of damaged cable are observed from the fiequency changes of different bending modes, which can be used to initially locate the damaged cable. The damage in either cable or girder can be further localized by the most significant change in curvature of girder. The damage occurred in a cable produces a remarkable change in force of nearby cables, whereas the damage in girder brings little change of cable forces. In addition, a pragmatic approach for localizing the damage in girder or cable is proposed based on a comprehensive utilization of the changes in frequency of vertical bending modes, modal curvature of girder, and force in cables. 展开更多
关键词 cable-stayed bridge Cable damage girder damage Modal curvature Cable force
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Stress and noises of steel box girders in Sutong Bridge
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作者 Xue Tao Chen Zhijian Dong Xuewu 《Engineering Sciences》 EI 2008年第4期53-59,共7页
Sutong Bridge is a cable-stayed bridge with a main span of 1 088 m. 370 high-precision stress monitoring measured data show that in the process of hoisting the steel box girders,the stress of the main girders is in th... Sutong Bridge is a cable-stayed bridge with a main span of 1 088 m. 370 high-precision stress monitoring measured data show that in the process of hoisting the steel box girders,the stress of the main girders is in the fluctuant and complex state and many meteorological factors,such as sunshine radiation,temperature and wind,have important influence on the change of stress of the steel box girders. According to the real-time weather data,the stress data after the process of wavelet denoising from representative measuring points in different weather conditions is picked to establish the stress response brought by meteorological factors with Layered Separation method,thereby basically eliminating the influence of meteorological factors on the stress of main girders,so that accurate and reliable stress data can be got for steel box girders adjustment and cable-tensioned construction control. 展开更多
关键词 Sutong bridge cable-stayed bridge steel box girder wavelet denoising meteorological factor Layered Separation method
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General design of Sutong Bridge 被引量:4
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作者 Zhang Xigang Yuan Hong +2 位作者 Pei Minshan Dai Jie Xu Lin 《Engineering Sciences》 EI 2009年第1期6-11,共6页
The main span of Sutong Bridge is a double-pylon,double-plane cable-stayed bridge with steel box girder,which has the world's longest central span of 1 088 m within cable-stayed bridges.To overcome problems caused... The main span of Sutong Bridge is a double-pylon,double-plane cable-stayed bridge with steel box girder,which has the world's longest central span of 1 088 m within cable-stayed bridges.To overcome problems caused by severe meteorological conditions,perplexing hydrological conditions,deep buried bedrock and higher navigation level,many new technics and methods were created.Keys including structural system,steel box girder,stayed cable,tower,pier,tower foundation,collision avoidance system,wind-resistance,seismic-resistance,structural nonlinear response and structural static stability were presented individually in this paper. 展开更多
关键词 cable-stayed bridge structural system steel box girder stayed cable TOWER tower foundation
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Estimating extreme temperature differences in steel box girder using long-term measurement data 被引量:5
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作者 丁幼亮 王高新 《Journal of Central South University》 SCIE EI CAS 2013年第9期2537-2545,共9页
The extreme temperature differences in fiat steel box girder of a cable-stayed bridge were studied.Firstly,by using the long-term measurement data collected by the structural health monitoring system installed on the ... The extreme temperature differences in fiat steel box girder of a cable-stayed bridge were studied.Firstly,by using the long-term measurement data collected by the structural health monitoring system installed on the Runyang Cable-stayed Bridge,the daily variations as well as seasonal ones of measured temperature differences in the box girder cross-section area were summarized.The probability distribution models of temperature differences were further established and the extreme temperature differences were estimated with a return period of 100 years.Finally,the temperature difference models in cross-section area were proposed for bridge thermal design.The results show that horizontal temperature differences in top plate and vertical temperature differences between top plate and bottom plate are considerable.All the positive and negative temperature differences can be described by the weighted sum of two Weibull distributions.The maximum positive and negative horizontal temperature differences in top plate are 10.30 ℃ and -13.80 ℃,respectively.And the maximum positive and negative vertical temperature differences between top plate and bottom plate are 17.30 ℃ and-3.70 ℃,respectively.For bridge thermal design,there are two vertical temperature difference models between top plate and bottom plate,and six horizontal temperature difference models in top plate. 展开更多
关键词 structural health monitoring cable-stayed bridge steel box girder temperature difference extreme value analysis
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主跨330 m高速铁路无砟轨道混合梁斜拉桥设计 被引量:1
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作者 庄严 《铁道工程学报》 EI CSCD 北大核心 2024年第4期42-47,59,共7页
研究目的:为满足防洪及通航要求,南玉高铁百合郁江特大桥采用(36+40+64+330+64+40+36)m钢箱-混凝土混合梁斜拉桥跨越郁江。该桥为目前国内在建最大跨度的高速铁路无砟轨道钢箱-混凝土混合梁斜拉桥。本文主要基于百合郁江特大桥的设计与... 研究目的:为满足防洪及通航要求,南玉高铁百合郁江特大桥采用(36+40+64+330+64+40+36)m钢箱-混凝土混合梁斜拉桥跨越郁江。该桥为目前国内在建最大跨度的高速铁路无砟轨道钢箱-混凝土混合梁斜拉桥。本文主要基于百合郁江特大桥的设计与受力特点,通过多种评价方法,探讨在大跨度钢混斜拉桥上铺设无砟轨道适应性,为后续建造同类型无砟轨道桥梁提供理论参考。研究结论:(1)主桥采用钢箱梁与混凝土箱梁,并在钢箱梁顶板上现浇混凝土桥面板,为无砟轨道铺设创造了良好条件,并且能很好地控制后期主梁的收缩徐变变形,提高大跨桥梁对无砟轨道适应性;(2)百合郁江特大桥具有良好的静力性能和刚度条件;(3)主桥将轨道结构高度由725 mm调整为775 mm,分别为底座板和道床板预留了20 mm和30 mm的纠偏量,为后续无砟轨道分级施工和纠偏提供了基础,能更好地将施工与测量误差逐级消除,提高无砟轨道铺设精度;(4)采用多种无砟轨道适应性评价方法对主桥无砟轨道线形进行分析,结论均满足设计要求;(5)该桥的成功实施,为国内外高速铁路无砟轨道桥梁建设提供了宝贵的经验,将进一步推动高速铁路无砟轨道大跨度桥梁的技术发展。 展开更多
关键词 无砟轨道 大跨度 钢箱梁 混合梁 斜拉桥
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深江铁路洪奇沥公铁两用大桥主桥方案构思与总体设计
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作者 刘振标 夏正春 +2 位作者 印涛 文望青 严爱国 《桥梁建设》 EI CSCD 北大核心 2024年第5期124-132,共9页
深江铁路洪奇沥公铁两用大桥主桥采用(3×100+808+3×100)m超短边跨钢-混组合混合梁斜拉桥,一跨跨越通航水域。该桥公铁分层布置,上层布置8车道城市快速路,下层布置4线铁路。主梁采用倒梯形双主桁截面,桥面布置紧凑、受力明确... 深江铁路洪奇沥公铁两用大桥主桥采用(3×100+808+3×100)m超短边跨钢-混组合混合梁斜拉桥,一跨跨越通航水域。该桥公铁分层布置,上层布置8车道城市快速路,下层布置4线铁路。主梁采用倒梯形双主桁截面,桥面布置紧凑、受力明确、经济性好。中跨主梁采用板桁-箱桁组合结构钢梁,桥面结构参与主桁受力,具有高效综合性能。边跨主梁采用矩形钢管混凝土叠合板-桁组合梁,融结构受力和锚固压重于一体,叠合板采用32 cm厚预制板+40 cm厚现浇层。钢-混结合段采用“钢格室+承压板”构造,钢-混结合面位于桥塔向中跨侧4.6 m。桥塔采用H形混凝土塔,基础采用35根直径4.0 m的大直径钻孔灌注桩。斜拉索采用标准抗拉强度2000 MPa的平行钢丝成品索,最大规格为PES(C)7-547。索梁锚固采用副桁弦杆节点兜底钢锚箱结构,传力可靠、抗疲劳性能好。索塔锚固创新地采用自平衡交叉混合锚固技术,以适应大规格斜拉索锚固。钢桁梁采用“纵向分段、横向分区”制造、运输、现场吊装的施工方案。 展开更多
关键词 斜拉桥 公路铁路两用桥 超短边跨多辅助墩体系 倒梯形双主桁截面 混合梁 钢-混组合梁 自平衡交叉锚固 桥梁设计
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铁路悬索桥车致纵向运动混合阻尼减振研究
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作者 封周权 范周健 +3 位作者 井昊坤 张弘毅 陈政清 万田保 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第7期10-20,共11页
针对铁路悬索桥在列车过桥时梁端纵向运动响应控制问题,提出了一种创新的混合阻尼减振方案,采用多种类型的阻尼器控制梁端位移,以满足不同的减振需求.以某在建大跨铁路悬索桥为工程背景,建立了空间桁架精细模型和等效单梁简化模型,系统... 针对铁路悬索桥在列车过桥时梁端纵向运动响应控制问题,提出了一种创新的混合阻尼减振方案,采用多种类型的阻尼器控制梁端位移,以满足不同的减振需求.以某在建大跨铁路悬索桥为工程背景,建立了空间桁架精细模型和等效单梁简化模型,系统研究了混合阻尼减振方案不同阻尼器参数对减振效果的影响.该方案将低指数黏滞阻尼器纵向安装于桥塔与加劲梁之间,同时在桥台与加劲梁之间纵向安装电涡流阻尼器.鉴于桥台结构的特殊性,电涡流阻尼器被设计为仅能承受压力的装置,并通过样机试验进行了验证.为了进一步提升减振性能,电涡流阻尼器还配备了摩擦耗能元件.该混合阻尼减振方案能够有效控制列车过桥时梁端的纵向运动响应,显著提高桥梁结构的安全性和耐久性,在类似工程中具有重要的参考价值和借鉴意义. 展开更多
关键词 铁路悬索桥 梁端纵向运动控制 混合阻尼减振 低指数黏滞阻尼器 电涡流阻尼器
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PC与钢-UHPC混合式连续梁桥结合段受力分析
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作者 邵旭东 熊满华 +2 位作者 怀臣子 莫然 杨纪 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第11期126-137,共12页
针对连续箱梁桥因自重过大导致开裂严重的工程难题,提出了一种PC梁(Pre⁃stressed Concrete,PC)与钢-UHPC(Ultra-High Performance Concrete,UHPC)组合梁结合的新型混合式连续梁桥.为探明新型桥梁中UHPC层的受力特性及其对钢-混结合段传... 针对连续箱梁桥因自重过大导致开裂严重的工程难题,提出了一种PC梁(Pre⁃stressed Concrete,PC)与钢-UHPC(Ultra-High Performance Concrete,UHPC)组合梁结合的新型混合式连续梁桥.为探明新型桥梁中UHPC层的受力特性及其对钢-混结合段传力机理的影响,以滨州黄河大桥为工程背景,首先建立了Midas整体计算模型,获得了结构在承载能力极限状态下的内力,然后采用ANSYS分别建立了无UHPC层和有UHPC层两种构造的钢-混结合段有限元局部模型,对比了两个构造结合段的受力特点及传力机理,分析了UHPC层的受力特性.计算结果表明:1)除了部分应力集中区域外,新型结构各部分应力均低于强度设计值,满足设计要求;2)最不利弯矩作用下,新型结构的钢箱梁顶板最大拉应力得到显著降低,可显著延长钢结构的疲劳寿命;3)新型结构的混凝土梁顶板在交界面处的应力下降了约5%~29%,可改善混凝土开裂现象;4)UHPC层的最大拉应力和压应力均低于其设计强度,满足规范要求,且UHPC层能分担4%~10.9%的结合段截面弯矩. 展开更多
关键词 桥梁工程 混合梁结合段 数值分析 力学性能 钢-UHPC组合梁
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序列二次规划方法在斜拉桥索力调整中的应用研究
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作者 徐郁峰 朱梦阳 +1 位作者 陈斯 谢云飞 《中外公路》 2024年第4期148-155,共8页
斜拉桥施工至成桥阶段时,由于各种因素影响,结构实际线形和内力与理论成桥状态相比,存在一定的误差,通常需要进行索力调整。该文针对斜拉桥在调索阶段的索力调整量计算问题,提出采用一种基于影响矩阵和序列二次规划求解索力调整量的方... 斜拉桥施工至成桥阶段时,由于各种因素影响,结构实际线形和内力与理论成桥状态相比,存在一定的误差,通常需要进行索力调整。该文针对斜拉桥在调索阶段的索力调整量计算问题,提出采用一种基于影响矩阵和序列二次规划求解索力调整量的方法。以某大跨度混合梁斜拉桥为背景,首先计算各索力单位变化下结构的线形和内力响应值,得到索力影响矩阵,然后选取合适的目标函数及约束条件,构建索力调整量计算模型,最后引入序列二次规划法求解索力调整量,得到索力调整后的结构内力与线形状态。计算结果表明:该方法计算简便,索力调整后的结构线形与内力均能满足施工控制要求。 展开更多
关键词 斜拉桥 混合梁 索力调整 影响矩阵 序列二次规划
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混合梁斜拉桥微膨胀UHPC灌注钢混结合段的时变效应 被引量:1
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作者 谭星宇 刘路明 +2 位作者 方志 洪金圣 杨灿 《铁道科学与工程学报》 EI CAS CSCD 北大核心 2024年第2期709-720,共12页
为明确微膨胀超高性能混凝土(Ultra-High-Performance Concrete,UHPC)灌注材料的收缩徐变对混合梁斜拉桥钢混结合段长期性能的影响,以湖北武穴长江公路大桥为工程背景,开展材性试验与结构反应实测。基于一种全桥杆系+局部空间网格的多... 为明确微膨胀超高性能混凝土(Ultra-High-Performance Concrete,UHPC)灌注材料的收缩徐变对混合梁斜拉桥钢混结合段长期性能的影响,以湖北武穴长江公路大桥为工程背景,开展材性试验与结构反应实测。基于一种全桥杆系+局部空间网格的多尺度有限元建模方法,对不同灌注材料收缩徐变下钢混结合段的时变效应进行分析研究。研究结果表明:实桥所采用的微膨胀UHPC在测试龄期内膨胀应变呈现出先增后减且始终保持膨胀的趋势,在约5 d龄期时达到最大膨胀应变292.6με,至1 080 d时为83.8με;徐变系数在前50 d龄期内增长较快,至1 080 d时为1.63。灌注材料的收缩可在结合段内部产生显著的次应力,表现为内填混凝土的拉应力和钢格室的压应力;徐变则会导致混凝土应力松弛而使一部分恒载压应力向钢结构转移。运营20 a后,钢混结合段内填普通混凝土存在较高的开裂风险。未作收缩控制的普通UHPC虽亦出现拉应力,但未超过其抗拉强度,抗裂安全系数仍可达到1.5以上。而微膨胀UHPC处于受压状态,不存在开裂问题。微膨胀UHPC的应用,既可改善内填混凝土的抗裂性能,又有助于常规钢混结合段的结构优化,大幅减少材料用量和结构自重。 展开更多
关键词 混合梁斜拉桥 钢混结合段 超高性能混凝土(UHPC) 微膨胀混凝土 收缩 徐变
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武汉市江汉四桥拓宽工程主桥设计关键技术
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作者 孙文峰 陈宇 +2 位作者 王碧波 程应刚 余家富 《铁道标准设计》 北大核心 2024年第9期88-94,共7页
武汉市江汉四桥拓宽工程主桥采用与旧桥外形一致、呈反对称布置的主跨232 m独塔混合梁斜拉桥,跨径布置为(232+70+40+20)m,采用刚构体系。主梁采用钢-混叠合梁与预应力混凝土梁组成的混合梁,钢-混结合面位于主跨距桥塔中心线9 m处,主跨... 武汉市江汉四桥拓宽工程主桥采用与旧桥外形一致、呈反对称布置的主跨232 m独塔混合梁斜拉桥,跨径布置为(232+70+40+20)m,采用刚构体系。主梁采用钢-混叠合梁与预应力混凝土梁组成的混合梁,钢-混结合面位于主跨距桥塔中心线9 m处,主跨采用双边工字形叠合梁,桥面宽23.5 m,标准梁高1.6 m;边跨采用预应力混凝土边主梁和箱形截面主梁,桥面宽23.5~27.0 m,标准梁高2.1 m。桥塔采用“A”形混凝土塔,塔高114.5 m,其下布置整体式承台,采用18根ϕ2.8 m的群桩基础。斜拉索按空间扇形双索面布置,共104根斜拉索,采用标准强度1770 MPa高强平行钢丝索,主跨梁端采用锚拉板锚固,边跨梁端设置槽口锚固,塔端采用锚固齿块锚固,主塔斜拉索锚固区纵、横桥向均配置有无粘结预应力钢棒。汉阳岸边墩采用T形钢筋混凝土板墩及钻孔桩基础;汉口岸边墩、辅助墩均采用钢筋混凝土独柱墩及钻孔桩基础。桥塔塔柱采用爬模施工;边跨主梁采用支架现浇施工,主跨主梁采用悬臂拼装施工。结构计算结果表明,大桥结构刚度及应力均满足要求。 展开更多
关键词 拓宽工程 独塔斜拉桥 混合梁 工字形叠合梁 预应力混凝土边主梁 “A”形桥塔 群桩基础 桥梁设计
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独塔非对称钢-混混合梁斜拉桥抗震性能研究 被引量:1
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作者 盖永斌 李欢 +1 位作者 龙绿军 张晋瑞 《长沙理工大学学报(自然科学版)》 CAS 2024年第4期149-159,共11页
【目的】研究独塔非对称钢-混混合梁斜拉桥的抗震性能,并探明非对称结构地震响应的差异。【方法】以长沙香炉洲大桥西汊航道桥为依托,采用MidasCivil软件建立非对称钢-混混合梁斜拉桥全桥有限元模型,分别采用反应谱法和非线性时程分析... 【目的】研究独塔非对称钢-混混合梁斜拉桥的抗震性能,并探明非对称结构地震响应的差异。【方法】以长沙香炉洲大桥西汊航道桥为依托,采用MidasCivil软件建立非对称钢-混混合梁斜拉桥全桥有限元模型,分别采用反应谱法和非线性时程分析法对其进行地震响应分析,并重点研究了结构非对称性对斜拉桥辅助墩、过渡墩及其桩基抗震性能的影响。【结果】独塔非对称钢-混混合梁斜拉桥的动力特性和地震响应规律呈现出明显的非对称性,非对称布置的两过渡墩和两辅助墩在地震作用下的内力响应存在较大差异,结构的非对称性对横向地震更加敏感,在抗震设计时应予以重视;除两过渡墩桩基外,长沙香炉洲大桥按照静力计算设计的结构尺寸及配筋形式均能满足各工况地震作用下的抗震性能目标;塔身、墩身在横向+竖向地震作用下的安全储备均大于纵向+竖向地震的,桩基在横向+竖向地震作用下的安全储备几乎都小于纵向+竖向地震的;受结构非对称性的影响,边跨的27#过渡墩桩基总是先于主跨的31#过渡墩桩基发生破坏;在横向地震作用下,受群桩承台影响横向各排桩基地震轴力有较大差异。【结论】从经济性和抗震合理性角度出发,应对独塔非对称钢-混混合梁斜拉桥进行差异化的抗震设计,研究成果可为非对称斜拉桥及其他非对称桥梁结构的抗震设计提供有益参考。 展开更多
关键词 独塔斜拉桥 非对称结构 钢-混混合梁 抗震性能 反应谱法 非线性时程分析法 弯矩-曲率分析
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G3铜陵长江公铁大桥1600 t架梁吊机转场施工关键技术
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作者 王青云 何明辉 《桥梁建设》 EI CSCD 北大核心 2024年第6期140-145,共6页
G3铜陵长江公铁大桥主桥为(127.5+131+988+131+127.5)m斜拉-悬索协作体系桥,主梁为两主桁钢桁梁结构,采用三角形桁式,桁高13.5 m、桁宽35.0 m。根据主桥总体施工计划,主桥南、北岸钢梁采用1台1600 t架梁吊机(重约840 t)架设,在南岸钢梁Z... G3铜陵长江公铁大桥主桥为(127.5+131+988+131+127.5)m斜拉-悬索协作体系桥,主梁为两主桁钢桁梁结构,采用三角形桁式,桁高13.5 m、桁宽35.0 m。根据主桥总体施工计划,主桥南、北岸钢梁采用1台1600 t架梁吊机(重约840 t)架设,在南岸钢梁Z32Z33架设完成后,需通过2艘1000 t浮吊将架梁吊机转场至北岸,北岸钢梁再利用1600 t架梁吊机进行架设。为保证1600 t架梁吊机顺利转场,在架梁吊机上增设牛腿并拆除架梁吊机部分构件,使其满足浮吊吊重要求,并通过建模计算得到架梁吊机重心位置,通过4根不同长度软吊带使浮吊吊钩与架梁吊机重心线重合。通过研究浮吊和运输船进场顺序、船舶站位及抛锚方案,解决了船舶抛锚空间交叉状态下的定位难题。结合BIM信息化监测平台对架梁吊机吊装过程中的倾角、转动等姿态进行动态监测,确保2艘浮吊之间纵、横向相对距离偏差均不超过100 cm,浮吊纵向绞锚水平移动距离偏差不超过100 cm,2艘浮吊在竖向下放、提升时竖向高差不超过50 cm,使架梁吊机安全转场至北岸。 展开更多
关键词 公路铁路两用桥 斜拉-悬索协作体系桥 钢桁梁 架梁吊机 浮吊 转场施工 动态监测 施工技术
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大跨度混合梁斜拉桥CRTSⅢ型无砟轨道快速施工关键技术 被引量:1
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作者 陈忠宇 《世界桥梁》 北大核心 2024年第2期50-55,共6页
为提高大跨度铁路桥梁CRTSⅢ型无砟轨道的施工工效,以(30+46+300+97+62.395)m高低混凝土塔混合梁斜拉桥——湖杭铁路富春江特大桥主桥为背景,提出了一种工效更高的CRTSⅢ型无砟轨道快速施工方案。该方案综合考虑施工过程中温度、桥面荷... 为提高大跨度铁路桥梁CRTSⅢ型无砟轨道的施工工效,以(30+46+300+97+62.395)m高低混凝土塔混合梁斜拉桥——湖杭铁路富春江特大桥主桥为背景,提出了一种工效更高的CRTSⅢ型无砟轨道快速施工方案。该方案综合考虑施工过程中温度、桥面荷载对桥面线形的影响,针对类似工程CRTSⅢ型无砟轨道施工过程中CPⅢ控制点需多次测定、线形控制方式对工期影响较大的局限性,采用在每个底座板放样断面的桥面两侧埋设测钉作为线形观测点,以测点与放样点间高差为控制指标进行放样;基于防撞墙等附属设施施工前、后的桥面线形实测数据对有限元计算模型进行刚度修正,结合CRTSⅢ型无砟轨道的构造特点,采用刚度修正后的有限元模型计算施工预拱度以控制桥面线形。富春江特大桥主桥采用该CRTSⅢ型无砟轨道快速施工方案实际节省工期20 d,在保证施工质量的基础上达到了提高工效、节省工期的效果。 展开更多
关键词 铁路桥 混合梁斜拉桥 CRTSⅢ型无砟轨道 线形控制 施工优化 施工技术
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Vertical dynamic response of the ballastless track on long-span plate-truss cable-stayed bridges 被引量:11
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作者 LI Yong Le SU Yang +1 位作者 XIA Fei Long ZHANG Nan 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第2期236-247,共12页
An analytical model is presented to study vertical dynamic response of the ballastless track on long-span plate-truss cable-stayed bridges based on an explicit dynamic analysis method.In the model,the train,ballastles... An analytical model is presented to study vertical dynamic response of the ballastless track on long-span plate-truss cable-stayed bridges based on an explicit dynamic analysis method.In the model,the train,ballastless track and bridge are treated as a coupled vibration system with interaction.By simulating the dynamic process of the system,this paper discusses the distribution law of dynamic responses of the bridge deck and the bed slab.It shows the necessity of a base plate for the ballastless track on the long-span plate-truss cable-stayed bridge.Comparison of the influence of different train speeds and stiffness of the elastic vibration-damping pad on the dynamic responses of the bridge deck and the bed slab is also made.The reasonable stiffness value of elastic vibration-damping pad is proposed. 展开更多
关键词 long-span cable-stayed bridge plate-truss girder ballastless track train-induced vibration vehicle-bridge system
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丹江口水库特大桥多格室钢-混结合段设计 被引量:1
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作者 覃作伟 廖原 +2 位作者 丁望星 阳晏 唐守峰 《桥梁建设》 EI CSCD 北大核心 2024年第4期8-13,共6页
丹江口水库特大桥为主跨760 m的双塔双索面部分地锚式混合梁斜拉桥,主跨主梁采用分离式双钢箱+正交异性钢-UHPC组合桥面结构轻型组合梁,边跨主梁采用PC边主梁。组合梁与PC梁连接过渡段总长6.0 m,其中钢梁段长1.0 m,钢梁加强段长3.0 m,钢... 丹江口水库特大桥为主跨760 m的双塔双索面部分地锚式混合梁斜拉桥,主跨主梁采用分离式双钢箱+正交异性钢-UHPC组合桥面结构轻型组合梁,边跨主梁采用PC边主梁。组合梁与PC梁连接过渡段总长6.0 m,其中钢梁段长1.0 m,钢梁加强段长3.0 m,钢-混结合段长2.0 m。为解决钢-混结合段边箱部分截面刚度过渡剧烈、应力集中明显、格室内填充混凝土施工困难等问题,利用外腹板和风嘴箱室构造边箱多格室断面,形成“钢格室+后承压板”的结构,提高钢-混结合段边箱部分截面刚度过渡均匀性;格室内钢-混连接区域采用开孔板剪力键和剪力钉,提高结合段的抗剪强度及延性,增强整体连接的可靠性;格室内填充料采用活性粉末混凝土,并综合考虑结构性能需求和技术指标进行配合比优化,改善结合段的耐久性和施工可靠性。结构受力分析结果表明,各构件受力均满足设计要求。 展开更多
关键词 斜拉桥 混合梁 钢-混结合段 多格室构造 开孔板剪力键 剪力钉 活性粉末混凝土 结构设计
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