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Three-dimensional nonlinear flutter analysis of long-span suspension bridges during erection 被引量:2
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作者 张新军 孙炳楠 项海帆 《Journal of Zhejiang University Science》 EI CSCD 2003年第1期21-27,共7页
In this work, the aerodynamic stability of the Yichang Suspension Bridge over Yangtze River during erection was determined by three dimensional nonlinear flutter analysis, in which the nonlinearities of structural dy... In this work, the aerodynamic stability of the Yichang Suspension Bridge over Yangtze River during erection was determined by three dimensional nonlinear flutter analysis, in which the nonlinearities of structural dynamic characteristics and aeroelastic forces caused by large deformation are fully considered. An interesting result obtained was that the bridge was more stable when the stiffening girders were erected in a non symmetrical manner as opposed to the traditional symmetrical erection schedule. It was also found that the severe decrease in the aerodynamic stability was due to the nonlinear effects. Therefore, the nonlinear factors should be considered accurately in aerodynamic stability analysis of long span suspension bridges during erection. 展开更多
关键词 Long span suspension bridges Nonlinear flutter analysis Erection stage
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Structural health monitoring of long-span suspension bridges using wavelet packet analysis 被引量:8
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作者 丁幼亮 李爱群 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2007年第3期289-294,共6页
During the service life of civil engineering structures such as long-span bridges, local damage at key positions may continually accumulate, and may finally result in their sudden failure. One core issue of global vib... During the service life of civil engineering structures such as long-span bridges, local damage at key positions may continually accumulate, and may finally result in their sudden failure. One core issue of global vibration-based health monitoring methods is to seek some damage indices that are sensitive to structural damage, This paper proposes an online structural health monitoring method for long-span suspension bridges using wavelet packet transform (WPT). The WPT- based method is based on the energy variations of structural ambient vibration responses decomposed using wavelet packet analysis. The main feature of this method is that the proposed wavelet packet energy spectrum (WPES) has the ability to detect structural damage from ambient vibration tests of a long-span suspension bridge. As an example application, the WPES-based health monitoring system is used on the Runyang Suspension Bridge under daily environmental conditions. The analysis reveals that changes in environmental temperature have a long-term influence on the WPES, while the effect of traffic loadings on the measured WPES of the bridge presents instantaneous changes because of the nonstationary properties of the loadings. The condition indication indices VD reflect the influences of environmental temperature on the dynamic properties of the Runyang Suspension Bridge. The field tests demonstrate that the proposed WPES-based condition indication index VD is a good candidate index for health monitoring of long-span suspension bridges under ambient excitations. 展开更多
关键词 structural health monitoring wavelet packet analysis wavelet packet energy spectrum ambient vibration test long-span suspension bridge
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Non-stationary Buffeting Response Analysis of Long Span Suspension Bridge Under Strong Wind Loading
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作者 Wenfeng Huang Kongqing Zou 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2016年第6期9-16,共8页
The non-stationary buffeting response of long span suspension bridge in time domain under strong wind loading is computed. Modeling method for generating non-stationary fluctuating winds with probabilistic model for n... The non-stationary buffeting response of long span suspension bridge in time domain under strong wind loading is computed. Modeling method for generating non-stationary fluctuating winds with probabilistic model for non-stationary strong wind fields is first presented. Non-stationary wind forces induced by strong winds on bridge deck and tower are then given a brief introduction. Finally,Non-stationary buffeting response of Pulite Bridge in China,a long span suspension bridge,is computed by using ANSYS software under four working conditions with different combination of time-varying mean wind and time-varying variance. The case study further confirms that it is necessity of considering non-stationary buffeting response for long span suspension bridge under strong wind loading,rather than only stationary buffeting response. 展开更多
关键词 NON-STATIONARY long span suspension bridge strong wind loading time domain analysisCLC number: TU311.3 Document code: A Article ID: 1005-9113(2016)06-0009-08
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A method for calculating strand tension in the anchor span of a suspension bridge considering the rotation of a splay saddle
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作者 Xuejin Huo Jia Chen +1 位作者 Dongxu Wang Li Zhu 《High-Speed Railway》 2023年第1期56-62,共7页
This paper reports a method for strand tension in anchor spans considering rotation.A kind of co-moved coordinate system,a saddle local coordinate system,was set up.This system implemented the rotation of the splay sa... This paper reports a method for strand tension in anchor spans considering rotation.A kind of co-moved coordinate system,a saddle local coordinate system,was set up.This system implemented the rotation of the splay saddle through the rotation of the coordinate system,and all calculations proceeded in this coordinate system.Considering the rotation of the anchoring surface by the rotation of the local coordinate system of the anchoring surface,the anchorage point coordinates of strands were transformed to the local sadle coordinate system.There was a two-layer iteration adopted in the calculation.In the inner iteration,the cable force at the end of the vertical bend was taken as the variable,and the ordinate of the anchorage point was taken as the target value.In the outer iteration,the vertical tangential angle at the end of the vertical bend was taken as the variable,and the ordinate of the anchorage point was taken as the target value.The method carried out the rotation of the splay saddle and anchor surface and was simple,convenient and without approximation.The effect of rotation was considered precisely;it showed stability during the process of two-layer iteration,powerful adaptation and higher efficiency and had been successfully applied in the construction control of the Wufengshan Yangtze River Bridge,the world's first kilometer-level combined highway and railway suspension bridge. 展开更多
关键词 suspension bridge Anchor span Strand tension ROTATION
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The mechanical response of multi-tower continuous-span suspension bridge deck pavement based on whole bridge analysis
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作者 Li Hongtao Zhang Chenchen +1 位作者 Hu Jing Qian Zhendong 《Engineering Sciences》 EI 2011年第2期88-92,共5页
The effect of multiple span suspension structure on the mechanical response of bridge deck pavement was studied, and finite element analysis (FEM) of stress and strain of pavement according to the bridge floor system ... The effect of multiple span suspension structure on the mechanical response of bridge deck pavement was studied, and finite element analysis (FEM) of stress and strain of pavement according to the bridge floor system features of super-long and high flexibility was made. Meanwhile, the FEM results were compared with those of the single span suspension structure. Three-stage analytic hierarchy process (AHP) is developed to analyze the mechanical response including whole bridge analysis, partial beams section analysis and orthotropic plate analysis. The most unfavorable load position was determined by the numerical solutions acquired from each stage to study the main mechanical index of multiple span suspension structure. The FEM results showed that the mechanical response numerical solutions by using the three-stage AHP are greater than those by simplified boundary condition, and the force condition of multiple span suspension structure is worse than that of the single span suspension structure. 展开更多
关键词 the multiple span suspension structure a three-stage analytic hierarchy process finite element analysis (FEM) the mechanical response of bridge deck pavement
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Cable flexural rigidity influence on suspension bridges static properties
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作者 曾森 陈少峰 +1 位作者 王彩花 王焕定 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2011年第5期86-90,共5页
In order to figure out the cable flexural rigidity influence on suspension bridges,a contrast model experiment is made:a chain cable model with no flexural rigidity and a wire cable model with some flexural rigidity.A... In order to figure out the cable flexural rigidity influence on suspension bridges,a contrast model experiment is made:a chain cable model with no flexural rigidity and a wire cable model with some flexural rigidity.And then,four finite element models of a same long-span suspension bridge with different cable element are set up to be analyzed.Both experimental and numerical simulation results show that,with the increase of the span and the decrease of sag-span ratio,the influence of the cable flexural rigidity is significant.The difference of nodes displacement reaches more than 10 cm in construction analysis,which will bring some trouble to the construction.And the difference of the maximum section edge normal stress may reach 15%,which may have an adverse impact onto the bridge.Therefore,considering the cable flexural rigidity is necessary on some analysis of suspension bridges. 展开更多
关键词 long-span suspension bridges the cable flexural rigidity experimental compares numerical simulation of different cable elements geometric nonlinearity
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Effect of vehicle weight on natural frequencies of bridges measured from traffic-induced vibration 被引量:16
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作者 Chul-Young Kim Dae-Sung Jung +2 位作者 Nam-Sik Kim Soon-Duck Kwon Maria Q.Feng 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2003年第1期109-116,共8页
Recently,ambient vibration test(AVT)is widely used tu estimate dynamic characteristics of large civil struc- tures.Dynamic characteristics ean be affected by various envirnnmental factors such as humidity,intensity of... Recently,ambient vibration test(AVT)is widely used tu estimate dynamic characteristics of large civil struc- tures.Dynamic characteristics ean be affected by various envirnnmental factors such as humidity,intensity of wind,and temperature.Besides these environmental conditions,tire mass of vehicles may change the measured valnes when traffic-in- duced vibration is used as a source of AVT tor bridges.The effect of vehicle mass on dynamic characteristics is investigated through traffic-induced vibration tests on three bridges;(1)three-span suspension bridge(128m+404m+128m),(2) five-span continuous steel box girder bridge(59m+3@ 95m+59m),(3)simply supported plate girder bridge(46m). Acceleration histories of each measurement location under normal traffic are recorded for 30 minutes at field.These recor- ded histories are divided into individual vibrations and are combined into two groups aceording to the level of vibration;one by heavy vehicles such as trucks and buses and the other by light vehicles such as passenger cars.Separate processing of the two groups of signals shows that,for the middle and long-span bridges,the difference can be hardly detected,but,for the short span bridges whose mass is relatively small,the measured natural frequencies can change up to 5.4%. 展开更多
关键词 ambient vibration test traffic induced vibration vehicle mass suspension bridge short-span bridge dynamic characteristics natural frequency
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Parameter effects on the dynamic characteristics of a super-long-span triple-tower suspension bridge 被引量:14
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作者 Hao WANG Ke-guan ZOU Ai-qun LI Chang-ke JIAO 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2010年第5期305-316,共12页
A 3D finite element model for the Taizhou Yangtze River Bridge,the first triple-tower long-span suspension bridge in China,is established based on the nonlinear finite element software ABAQUS,and the dynamic character... A 3D finite element model for the Taizhou Yangtze River Bridge,the first triple-tower long-span suspension bridge in China,is established based on the nonlinear finite element software ABAQUS,and the dynamic characteristics of the bridge are analyzed using the LANCZOS eigenvalue solution method. The study focuses on the effects of the vertical,lateral and torsional stiffness of the steel box girder,the rigid central buckle and the elastic restraints connecting the towers and the steel box girder on the dynamic characteristics of the triple-tower suspension bridge. Our results show that,in general,the dynamic characteristics of the triple-tower suspension bridge are similar to those of two-tower suspension bridges. The vertical,lateral and torsional stiffness of the steel box girder have different effects on the dynamic characteristics of triple-tower suspension bridges. The elastic re-straints have a more significant effect on the dynamic characteristics than the central buckle,and decreasing the stiffness of the elastic restraints results in the appearance of a longitudinal floating vibration mode of the bridge. Also,rigid central buckles have a greater influence on the dynamic characteristics of triple-tower suspension bridges than on those of two-tower suspension bridges. The results obtained could serve as a valuable numerical reference for analyzing and designing super-long-span triple-tower suspension bridges. 展开更多
关键词 suspension bridge Taizhou bridge Triple-tower Dynamic characteristics Super-long-span
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某千米级大跨度悬索桥荷载试验研究
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作者 谭达 黄晓敏 +2 位作者 毛德均 茹兴伦 毛永康 《科技通报》 2025年第3期106-113,共8页
为评估金安金沙江大桥(主跨1386 m的悬索桥)在运营条件下的结构受力状态和承载能力是否满足设计预期,对其开展了现场静动载试验。静载试验主要测试关键部位挠度、应变、索力增量,动载试验包括模态试验和无障碍行车试验。在静载试验下,... 为评估金安金沙江大桥(主跨1386 m的悬索桥)在运营条件下的结构受力状态和承载能力是否满足设计预期,对其开展了现场静动载试验。静载试验主要测试关键部位挠度、应变、索力增量,动载试验包括模态试验和无障碍行车试验。在静载试验下,索塔顶部最大纵向偏移量为75 mm,塔底最大应变为26με,主缆竖向实测最大挠度为1805 mm。主缆锚跨索股的索力最大实测增量为20353.495 kN,吊索索力最大实测增量为193.832 kN。主梁的最大竖向挠度实测值为1724 mm,且其最大纵向偏移实测值为319 mm。主梁上弦杆的最大应变实测值为55με,下弦杆最大应变实测值为305με,斜腹杆最大应变实测值为169με,竖腹杆最大应变实测值为67με。校验系数为0.59~0.98,相对残余均小于20%。动载试验下,1~3阶自振频率的实测值均高于计算值,且在不同速度行驶时产生的冲击系数均小于计算值。静载试验结果表明主桥的整体受力性能较好。动载试验结果表明桥跨的动力响应和振动特性满足设计要求。 展开更多
关键词 大跨度悬索桥 动静载试验 校验系数 冲击系数
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某自锚式悬索桥主缆锚跨索股火损检测及安全鉴定
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作者 齐秦 吕宏奎 +2 位作者 余力 邱忠南 李鸥 《桥梁建设》 北大核心 2025年第1期146-153,共8页
某自锚式悬索桥在维修过程中主缆锚跨索股过火,部分索股出现钢丝断裂的病害。为保障桥梁的运营安全,指导桥梁后期维修处治,先对过火索股进行现场调查和初步鉴定,通过钢丝的力学性能试验、理论分析、仿真分析等方法进行火灾下索股的温度... 某自锚式悬索桥在维修过程中主缆锚跨索股过火,部分索股出现钢丝断裂的病害。为保障桥梁的运营安全,指导桥梁后期维修处治,先对过火索股进行现场调查和初步鉴定,通过钢丝的力学性能试验、理论分析、仿真分析等方法进行火灾下索股的温度场推算,进而分析索股在火灾中的受力变化和火灾后的剩余抗拉强度,最后对索股结构安全进行鉴定。结果表明:部分索股初步鉴定评级为Ⅲ、Ⅳ类;过火锚跨不同索股的过火温度不同,锚跨索股间会产生索力重分配;索股内部钢丝会产生温度差,索股内部钢丝之间也会发生应力重分布,部分钢丝因温度较高导致强度降低而发生颈缩断裂;部分索股的安全系数不满足规范要求,应采取加固、更换或拆除的措施。根据火损检测及安全鉴定结果,该桥主缆过火索股采用“单丝接长、局部更换”方案进行处治,处治后桥梁处于安全状态。 展开更多
关键词 自锚式悬索桥 主缆 锚跨索股 火灾 温度场 评估 火损检测 安全鉴定
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新型钢-混组合桥塔构造型式研究
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作者 王鹏 王康宁 黄春雷 《城市道桥与防洪》 2025年第1期75-79,共5页
针对传统钢-混组合桥塔的钢壁板单侧约束易发生局部屈曲、加劲肋构造复杂、施工难度大等问题,提出了两种新型的钢-混组合桥塔构造型式:加劲肋外置型外包钢中空混凝土组合桥塔、双钢板-UHPC(Ultra-High Performance Concrete)组合桥塔。... 针对传统钢-混组合桥塔的钢壁板单侧约束易发生局部屈曲、加劲肋构造复杂、施工难度大等问题,提出了两种新型的钢-混组合桥塔构造型式:加劲肋外置型外包钢中空混凝土组合桥塔、双钢板-UHPC(Ultra-High Performance Concrete)组合桥塔。以某峡谷千米级铁路悬索桥的组合桥塔为工程背景,拟定两种新型组合桥塔的构造尺寸,通过有限元建模分析了提出的新型组合桥塔构造受力性能,并且从施工和经济层面对比分析了两种新型组合桥塔与原桥四肢格构式钢管-混凝土组合桥塔的技术经济指标。研究结果表明:两种新型钢-混组合截面桥塔均能满足规范中对大跨度悬索桥主塔静力和稳定性的设计要求,且具有构造简化、受力性能优以及施工难度降低等优势;外包钢中空混凝土组合桥塔、双钢板-UHPC组合桥塔在材料成本上相比原设计钢管混凝土桥塔分别提高约13%、19%,但考虑到构造简化带来的施工造价降低以及UHPC材料的高性能,建造和后期运营维护成本大幅降低。 展开更多
关键词 桥梁工程 大跨度结构 悬索桥 UHPC 钢-混组合桥塔
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大跨度桥梁悬索施工技术的应用与发展趋势
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作者 马文豪 《智能城市应用》 2025年第2期44-46,共3页
大跨度悬索桥凭借卓越的跨越能力和灵活的结构,在许多重要交通项目中得到了广泛应用,尤其在长江、尼罗河等大水域的桥梁建设中占据着关键位置。这类桥梁的施工不仅涉及高空作业、精确的钢索张拉与测量,而且施工过程常常受到环境条件的... 大跨度悬索桥凭借卓越的跨越能力和灵活的结构,在许多重要交通项目中得到了广泛应用,尤其在长江、尼罗河等大水域的桥梁建设中占据着关键位置。这类桥梁的施工不仅涉及高空作业、精确的钢索张拉与测量,而且施工过程常常受到环境条件的限制。随着桥梁规模的不断增大,施工环境的复杂性也日益提升,传统的施工技术已无法满足现代工程的需求,因此,新技术的引入已成为一种必然趋势。 展开更多
关键词 大跨度桥梁 悬索施工技术 发展趋势
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四主缆大跨悬索桥抗震性能分析及减震措施优化 被引量:1
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作者 刘志文 魏祎博 +4 位作者 王连华 丁少凌 谢功元 谢学鑫 陈政清 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第3期8-19,共12页
以燕矶长江大桥为工程背景,首先,采用动力非线性时程法分析了燕矶长江大桥抗震性能,并研究了设置电涡流-摩擦组合型阻尼器和黏滞阻尼器对大跨悬索桥抗震性能的影响;然后,对附加电涡流-摩擦组合型阻尼器摩擦力、阻尼系数和阻尼指数开展... 以燕矶长江大桥为工程背景,首先,采用动力非线性时程法分析了燕矶长江大桥抗震性能,并研究了设置电涡流-摩擦组合型阻尼器和黏滞阻尼器对大跨悬索桥抗震性能的影响;然后,对附加电涡流-摩擦组合型阻尼器摩擦力、阻尼系数和阻尼指数开展了参数敏感性分析;最后,从耗能角度分析地震作用下电涡流-摩擦组合型阻尼器减震特点.结果表明:在E2地震作用下,桥塔关键截面抗弯能力均大于弯矩需求;在“纵向+竖向”地震作用下梁端纵向位移较大.设置塔梁处纵桥向阻尼器后,可有效降低主桥梁端纵向位移;增大摩擦力、阻尼系数与降低阻尼指数均可提升梁端纵向地震响应的控制效果,但参数变化对桥塔控制截面的地震响应影响较小.阻尼系数较大时,电涡流阻尼主导了电涡流-摩擦组合型阻尼器耗能,相较于黏滞阻尼器,电涡流-摩擦组合型阻尼器对梁端纵向位移控制效果更好. 展开更多
关键词 四主缆大跨悬索桥 抗震性能 非线性时程分析 黏滞阻尼器 电涡流-摩擦组合型阻尼器
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超长大跨度公铁合建桥梁结构体系研究 被引量:2
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作者 王小飞 《铁道标准设计》 北大核心 2024年第1期87-95,共9页
新建甬舟铁路西堠门公铁两用大桥连接金塘岛和册子岛,桥位处海域宽2.7 km,最大水深93 m,地形复杂,桥梁设计难度大。为研究超长大跨度公铁合建桥梁合理结构体系,结合地形地质条件,选取主跨1500 m悬索桥、斜拉桥及斜拉悬索协作体系3种桥... 新建甬舟铁路西堠门公铁两用大桥连接金塘岛和册子岛,桥位处海域宽2.7 km,最大水深93 m,地形复杂,桥梁设计难度大。为研究超长大跨度公铁合建桥梁合理结构体系,结合地形地质条件,选取主跨1500 m悬索桥、斜拉桥及斜拉悬索协作体系3种桥型方案,对上部结构设计进行详细介绍,并从静力性能、动力性能、经济性能等方面对不同结构体系进行对比分析。研究表明:(1)与斜拉体系相比,协作体系桥可减小30%~50%的主梁内力和60%的桥塔内力,一定程度上解决了加劲梁承受巨大轴压力造成屈曲问题,并有效减小了桥塔规模;(2)与悬索桥相比,协作体系可减小50%的主缆内力,主缆钢丝和锚碇的工程量相应减小,施工难度得以降低,同时协作体系扭转频率更高,降低了结构在较低风速下发生涡激振动的可能性;(3)斜拉悬索协作体系能够充分发挥斜拉结构和悬索结构的组合优势,实现超大跨度的同时具有较大的纵向刚度和竖向刚度,满足铁路行车对结构刚度的要求;(4)对于主跨1500 m级超长大跨度公铁合建桥梁,斜拉悬索协作体系经济性更好。 展开更多
关键词 超长大跨度公铁合建桥 斜拉悬索协作体系 斜拉桥 悬索桥 桥梁结构体系
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复合空间索对大跨度铁路悬索桥横向刚度影响的研究
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作者 向活跃 陶宇 +2 位作者 汪镇 钟进坤 李永乐 《振动与冲击》 EI CSCD 北大核心 2024年第11期148-154,164,共8页
为提升大跨度铁路悬索桥的横向刚度,提出一种由主、副斜拉索组成的复合空间索结构。然后,基于材料有效利用率和静力分析,对复合空间索的直径、主斜拉索在加劲梁和地表的锚点位置、副斜拉索的数量等参数进行了优化。最后,采用风-车-桥耦... 为提升大跨度铁路悬索桥的横向刚度,提出一种由主、副斜拉索组成的复合空间索结构。然后,基于材料有效利用率和静力分析,对复合空间索的直径、主斜拉索在加劲梁和地表的锚点位置、副斜拉索的数量等参数进行了优化。最后,采用风-车-桥耦合振动分析法,基于行车性能得到了桥梁横向挠跨比限值,分析了主、副斜拉索对横向挠跨比限值提升率的影响。结果表明:基于材料有效利用率,主斜拉索与加劲梁的锚点位置宜设在1/4主跨附近,且主斜拉索的地表锚点、加劲梁锚点与桥塔的垂直距离相等时最优,每组复合空间索中副斜拉索设置1根即可;在复合空间索的最优布置形式下,桥梁横向挠跨比可降低14.18%,横向挠跨比限值可提升16.79%。 展开更多
关键词 复合空间索 铁路悬索桥 风-车-桥系统 横向挠跨比 横向挠跨比限值
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基于工程经济性的公路悬索桥主缆最优垂跨比研究
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作者 彭元诚 丁少凌 彭健哲 《桥梁建设》 EI CSCD 北大核心 2024年第5期22-29,共8页
为寻求工程经济性最优的公路悬索桥主缆垂跨比,以我国近年多座采用混凝土桥塔的单跨公路悬索桥为背景,建立主缆、锚碇、桥塔基础工程量的直接函数模型和桥塔塔身工程量的非线性函数拟合模型,对跨度750~2250 m、单层车道数4~8及双层车道... 为寻求工程经济性最优的公路悬索桥主缆垂跨比,以我国近年多座采用混凝土桥塔的单跨公路悬索桥为背景,建立主缆、锚碇、桥塔基础工程量的直接函数模型和桥塔塔身工程量的非线性函数拟合模型,对跨度750~2250 m、单层车道数4~8及双层车道数6+4、垂跨比1/14~1/6共952种布置形式的悬索桥进行大范围关于主缆垂跨比的工程经济性研究,并以2座实桥为算例分析主缆垂跨比对悬索桥静、动力性能及抗风性能的影响。结果表明:主缆垂跨比对悬索桥工程经济性影响显著;悬索桥主缆最优垂跨比与跨度相关,而车道数、加劲梁荷载集度的影响相对较小,涉水和不涉水的差异也不显著;基于工程经济性考虑,跨度750~2250 m的悬索桥主缆最优垂跨比为1/6.5~1/8.5,比经验值增大较多。2座实桥算例分析表明随着垂跨比增加,加劲梁挠度和活载应力有所增加,抗风性能略有提升,建议方案设计阶段加大垂跨比研究范围、对工程经济性和桥梁力学性能进行综合比选。 展开更多
关键词 悬索桥 主缆垂跨比 工程量模型 工程经济性 力学性能 桥梁设计
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悬索桥基频影响因素的参数化分析与实用计算
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作者 杨詠昕 徐浩骏 +1 位作者 杨虎晨 葛耀君 《结构工程师》 2024年第1期53-61,共9页
桥梁设计师常常采用简化(实用)公式估算桥梁基频,用以在大跨桥梁设计的前期阶段估算其动力性能。但是随着桥梁建设的发展,部分公式的精度已无法满足要求;在实际使用时各公式易用性也存在较大差异。本文在分析各基频估算公式误差来源的... 桥梁设计师常常采用简化(实用)公式估算桥梁基频,用以在大跨桥梁设计的前期阶段估算其动力性能。但是随着桥梁建设的发展,部分公式的精度已无法满足要求;在实际使用时各公式易用性也存在较大差异。本文在分析各基频估算公式误差来源的基础上,选择关键变量、采用参数化有限元模型分析各控制因素的影响效应,据此选择改进策略,同时在分析各参数相互关系的基础上进行变量精简,提升估算公式的易用性。经实测和计算基频值的验证,改进实用计算公式在提高了易用性和适用性的同时,有效控制了基频估算结果的整体误差极值,提升了基频估算公式的工程应用价值。 展开更多
关键词 大跨度桥梁 悬索桥 动力特性 基频估算
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张靖皋长江大桥南航道桥主墩围堰施工关键技术 被引量:1
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作者 何文涛 黄修平 +2 位作者 付甦 庾焱秋 朱润华 《中国港湾建设》 2024年第3期80-85,共6页
张靖皋长江大桥南航道桥主跨采用2300 m整体钢箱梁悬索桥,是世界最大跨径悬索桥。南塔采用世界首创超高钢箱-钢管约束混凝土组合索塔,基础承台采用八边形结构,结合桥位水文地质及设计要求,承台外围设锁扣钢管桩围堰作为施工围护结构,后... 张靖皋长江大桥南航道桥主跨采用2300 m整体钢箱梁悬索桥,是世界最大跨径悬索桥。南塔采用世界首创超高钢箱-钢管约束混凝土组合索塔,基础承台采用八边形结构,结合桥位水文地质及设计要求,承台外围设锁扣钢管桩围堰作为施工围护结构,后期兼作大桥永久冲刷防护和船撞消能设施。施工过程中,采用履带吊+振动锤/冲击锤配合特制导向架隔孔施打的施工工艺,有效解决了超长锁扣钢管桩的施沉及合龙精度的难题;利用对撑加工成桁架整体安装、基底开挖及护筒围堰壁清理、分仓浇筑水下封底混凝土、导管底口铺设钢板等工艺,极大地降低了现场施工难度,保证了超大基坑水下封底混凝土的浇筑质量,为今后同类型深基坑施工提供了有益的借鉴。 展开更多
关键词 桥梁工程 最大跨径悬索桥 超长锁扣钢管桩 特制导向架 桁架内支撑 分仓封底
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碎裂岩夹层中大跨度悬索桥隧道锚稳定性分析 被引量:1
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作者 张健 马建林 +1 位作者 王钦科 苏伟 《长江科学院院报》 CSCD 北大核心 2024年第4期149-156,共8页
隧道锚作为悬索桥的重要受力构件,其稳定性是保证悬索桥安全运行的关键。为探究某大跨度铁路悬索桥隧道锚在碎裂岩夹层中的受荷响应规律,建立精细化数值模型,对隧道锚的稳定性进行综合评估,论证隧道锚在碎裂岩夹层中的适用性和安全性。... 隧道锚作为悬索桥的重要受力构件,其稳定性是保证悬索桥安全运行的关键。为探究某大跨度铁路悬索桥隧道锚在碎裂岩夹层中的受荷响应规律,建立精细化数值模型,对隧道锚的稳定性进行综合评估,论证隧道锚在碎裂岩夹层中的适用性和安全性。研究表明:碎裂岩夹层对隧道锚的变形影响显著,隧道锚后锚面及围岩的位移分布曲线呈左高右低的“驼峰状”,锚塞体界面摩阻力在碎裂岩夹层区域产生突变。锚-岩联合体的破坏从碎裂岩夹层中锚塞体拱顶区域开始,逐步向拱腰和拱底扩展,直至锚-岩界面塑性区贯通,其破坏模式为锚-岩接触带的剪切破坏。隧道锚的综合承载力以钢束受拉破坏为控制条件,综合极限承载力为2.3倍设计主缆力。隧道锚在碎裂岩夹层中的稳定性和适应性良好。 展开更多
关键词 隧道式锚碇 碎裂岩体 大跨度悬索桥 稳定性分析 数值模拟
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土耳其1915恰纳卡莱大桥无索区钢箱梁安装关键技术 被引量:4
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作者 杜传鹏 卢伟 +1 位作者 任海滨 陈俊峰 《世界桥梁》 北大核心 2024年第1期7-12,共6页
土耳其1915恰纳卡莱大桥为主跨2023 m的双塔三跨钢箱梁悬索桥。钢箱梁总长3563 m,边跨及桥塔处无索区钢箱梁均为非标准节段,长度为9.8~43.6 m,吊装重量为344~1330 t,涉及多种吊装方式及节段安装工艺,施工难度大。该桥边跨S33节段定位精... 土耳其1915恰纳卡莱大桥为主跨2023 m的双塔三跨钢箱梁悬索桥。钢箱梁总长3563 m,边跨及桥塔处无索区钢箱梁均为非标准节段,长度为9.8~43.6 m,吊装重量为344~1330 t,涉及多种吊装方式及节段安装工艺,施工难度大。该桥边跨S33节段定位精度要求高、顶推难度大,利用特殊设计牛腿,顺利实现节段顶推及边跨合龙;边跨焊接线形精度要求高、工序转换复杂,S32和S31节段布设临时吊索系统,确保焊接线形可控;塔区工作平台上的S01、T00和M01单个节段利用特殊设计三向可调支架及导向架施工,确保浮吊吊装安全可靠及定位精度可控;S02和M02节段吊装时与已吊装节段在空间上相互干扰,通过布设牵引荡移系统,顺利实现塔区S02和M02节段缆载吊机大角度吊装及节段荡移;采用吊索调节装置、边跨反拉系统及4台缆载吊机同步抬吊等措施,塔区S01、T00和M01组拼焊接的大节段顺利合龙。 展开更多
关键词 悬索桥 钢箱梁 无索区节段 牵引荡移系统 边跨反拉系统 缆载吊机同步抬吊 施工技术
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