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Longitudinal forces of continuously welded track on high-speed railway cable-stayed bridge considering impact of adjacent bridges 被引量:32
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作者 戴公连 闫斌 《Journal of Central South University》 SCIE EI CAS 2012年第8期2348-2353,共6页
A proven beam-track contact model was used to analyze the track-structure interaction of CWR (continuously welded track) on bridge. Considering the impact of adjacent bridges, the tower-cable-track-beam-pier-pile fini... A proven beam-track contact model was used to analyze the track-structure interaction of CWR (continuously welded track) on bridge. Considering the impact of adjacent bridges, the tower-cable-track-beam-pier-pile finite element model of the cable-stayed bridge was established. Taking a bridge group including 40-32m simply-supported beam and (32+80+112)m single-tower cable-stayed bridge and 17-32m simply-supported beam on the Kunming-Shanghai high-speed railway as an example, the characteristics of CWR longitudinal force on the cable-stayed bridge were studied. It is shown that adjacent bridges must be considered in the calculation of the track expansion force and bending force on cable-stayed bridge. When the span amount of adjacent bridges is too numerous, it can be simplified as six spans; the fixed bearing of adjacent simply-supported beams should be placed on the side near the cable-stayed bridge; the track expansion device should be set at the bridge tower to reduce the track force near the bridge abutment. 展开更多
关键词 high-speed railway continuously welded track cable-stayed bridge simply-supported beam
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Effects of fundamental factors on coupled vibration of wind-rail vehicle-bridge system for long-span cable-stayed bridge 被引量:10
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作者 张明金 李永乐 汪斌 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第5期1264-1272,共9页
In a wind-vehicle-bridge(WVB) system,there are various interactions among wind,vehicle and bridge.The mechanism for coupling vibration of wind-vehicle-bridge systems is explored to demonstrate the effects of fundament... In a wind-vehicle-bridge(WVB) system,there are various interactions among wind,vehicle and bridge.The mechanism for coupling vibration of wind-vehicle-bridge systems is explored to demonstrate the effects of fundamental factors,such as mean wind,fluctuating wind,buffeting,rail irregularities,light rail vehicle vibration and bridge stiffness.A long cable-stayed bridge which carries light rail traffic is regarded as a numerical example.Firstly,a finite element model is built for the long cable-stayed bridge.The deck can generally be idealized as three-dimensional spine beam while cables are modeled as truss elements.Vehicles are modeled as mass-spring-damper systems.Rail irregularities and wind fluctuation are simulated in time domain by spectrum representation method.Then,aerodynamic loads on vehicle and bridge deck are measured by section model wind tunnel tests.Eight vertical and torsional flutter derivatives of bridge deck are identified by weighting ensemble least-square method.Finally,dynamic responses of the WVB system are analyzed in a series of cases.The results show that the accelerations of the vehicle are excited by the fluctuating wind and the track irregularity to a great extent.The transverse forces of wheel axles mainly depend on the track irregularity.The displacements of the bridge are predominantly determined by the mean wind and restricted by its stiffness.And the accelerations of the bridge are enlarged after adding the fluctuating wind. 展开更多
关键词 wind-vehicle-bridge system coupled vibration long-span cable-stayed bridge fundamental factors
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Dynamic effect of heavy-haul train on seismic response of railway cable-stayed bridge 被引量:7
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作者 ZHU Zhi-hui GONG Wei +3 位作者 WANG Kun LIU Yu DAVIDSON Michael T JIANG Li-zhong 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第7期1939-1955,共17页
This paper focuses on understanding and evaluating the dynamic effect of the heavy-haul train system on the seismic performance of a long-span railway bridge. A systematic study on the effect of heavy-haul trains on b... This paper focuses on understanding and evaluating the dynamic effect of the heavy-haul train system on the seismic performance of a long-span railway bridge. A systematic study on the effect of heavy-haul trains on bridge seismic response has been conducted, considering the influence of vehicle modeling strategies and dynamic characteristics of the seismic waves. For this purpose, the performance of a long-span cable-stayed railway bridge is assessed with stationary trains atop it, where the heavy-haul vehicles are modeled in two different ways: the multi-rigid body model with suspension system and additional mass model. Comparison of the bridge response in the presence or absence of the train system has been conducted, and the vehicle loading situation, which includes full-load and no-load, is also discussed. The result shows that during the earthquake, the peak moment of the main girder and peak stress of stay cables increase by 80% and by 40% in the presence of fully loaded heavy-haul trains, respectively. At the same time, a considerable decrease appears in the peak acceleration of the main girder. This proves the existence of the damping effect of the heavy-haul train system, and this effect is more obvious for the fully loaded vehicles. Finally, this paper proposes an efficient vehicle modeling method with 2 degrees of freedom(DOF) for simplifying the treatment of the train system in bridge seismic checking. 展开更多
关键词 train-bridge interaction heavy-haul train cable-stayed bridge EARTHQUAKE live load
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Numerical calculation on solar temperature field of a cable-stayed bridge with U-shaped section on high-speed railway 被引量:3
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作者 刘文硕 戴公连 饶少臣 《Journal of Central South University》 SCIE EI CAS 2014年第8期3345-3352,共8页
Based on transient temperature field theory of heat conduction, the solar temperature field calculation model of U-shape sectioned high-speed railway cable-stayed bridge under actions of concrete beams and ballast was... Based on transient temperature field theory of heat conduction, the solar temperature field calculation model of U-shape sectioned high-speed railway cable-stayed bridge under actions of concrete beams and ballast was established. Using parametric programming language, finite element calculation modules considering climate conditions, bridge site, structure dimension and material thermophysical properties were compiled. Six standard day cycles with the strongest yearly radiation among the bridge sites were selected for sectional solar temperature field calculation and temperature distributions under different temperature-sensitive parameters were compared. The results show that under the influence of sunshine, U-shape section of the beam shows obvious nonlinear distribution characteristics and the maximum cross-section temperature difference is more than 21℃; the ballast significantly reduces sunshine temperature difference of the beam and temperature peak of the bottom margin lags with the increase of ballast thickness; the maximum cross-section vertical temperature gradient appears in summer while large transverse temperature difference appears in winter. 展开更多
关键词 high-speed railway cable-stayed bridge U-shaped section solar temperature field thermal analysis
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Dynamic analysis and modal test of long-span cable-stayed bridge based on ambient excitation 被引量:3
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作者 陈常松 颜东煌 《Journal of Central South University of Technology》 EI 2007年第1期135-139,共5页
To study the stiffness distribution of girder and the method to identify modal parameters of cable-stayed bridge, a simplified dynamical finite element method model named three beams model was established for the gird... To study the stiffness distribution of girder and the method to identify modal parameters of cable-stayed bridge, a simplified dynamical finite element method model named three beams model was established for the girder with double ribs. Based on the simplified model four stiffness formulae were deduced according to Hamilton principle. These formulae reflect well the contribution of the flexural, shearing, free torsion and restricted torsion deformation, respectively. An identification method about modal parameters was put forward by combining method of peak value and power spectral density according to modal test under ambient excitation. The dynamic finite element method analysis and modal test were carried out in a long-span concrete cable-stayed bridge. The results show that the errors of frequencies between theoretical analysis and test results are less than 10% mostly, and the most important modal parameters for cable-stayed bridge are determined to be the longitudinal floating mode, the first vertical flexural mode and the first torsional mode, which demonstrate that the method of stiffness distribution for three beams model is accurate and method to identify modal parameters is effective under ambient excitation modal test. 展开更多
关键词 bridge engineering cable-stayed bridge dynamic finite element method ambient excitation modal test
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Data-driven methods for predicting the representative temperature of bridge cable based on limited measured data
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作者 WANG Fen DAI Gong-lian +2 位作者 HE Chang-lin GE Hao RAO Hui-ming 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第9期3168-3186,共19页
Cable-stayed bridges have been widely used in high-speed railway infrastructure.The accurate determination of cable’s representative temperatures is vital during the intricate processes of design,construction,and mai... Cable-stayed bridges have been widely used in high-speed railway infrastructure.The accurate determination of cable’s representative temperatures is vital during the intricate processes of design,construction,and maintenance of cable-stayed bridges.However,the representative temperatures of stayed cables are not specified in the existing design codes.To address this issue,this study investigates the distribution of the cable temperature and determinates its representative temperature.First,an experimental investigation,spanning over a period of one year,was carried out near the bridge site to obtain the temperature data.According to the statistical analysis of the measured data,it reveals that the temperature distribution is generally uniform along the cable cross-section without significant temperature gradient.Then,based on the limited data,the Monte Carlo,the gradient boosted regression trees(GBRT),and univariate linear regression(ULR)methods are employed to predict the cable’s representative temperature throughout the service life.These methods effectively overcome the limitations of insufficient monitoring data and accurately predict the representative temperature of the cables.However,each method has its own advantages and limitations in terms of applicability and accuracy.A comprehensive evaluation of the performance of these methods is conducted,and practical recommendations are provided for their application.The proposed methods and representative temperatures provide a good basis for the operation and maintenance of in-service long-span cable-stayed bridges. 展开更多
关键词 cable-stayed bridges representative temperature gradient boosted regression trees(GBRT)method field test limited measured data
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Spatial gust impact analysis on safety and comfort of a train crossing cable-stayed bridge combining statistical method 被引量:2
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作者 ZHANG Yun-fei LI Li 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2605-2620,共16页
In order to study the safety and the comfort of high-speed trains running on a single-tower cable-stayed bridge under spatial gust,a dynamic model of wind-train-bridge analysis model is built based on the autoregressi... In order to study the safety and the comfort of high-speed trains running on a single-tower cable-stayed bridge under spatial gust,a dynamic model of wind-train-bridge analysis model is built based on the autoregressive method,the multi-body dynamics method and the finite element method.On this basis,the influence of spatial gust model loading,the suspension parameters change,wind attack angle and speed on the train-bridge system are analyzed by combining the time/frequency domain analysis and statistical methods.The results show that the spatial gust environment is one of the most important factors affecting safety and comfort and can make the calculation result tend to be conservative and more conducive.The response changes caused by K_(py),K_(px)and K_(sx)changes are nearly linear,while Ksy shows nonlinear characteristics and the most sensitivity.Wind attack angle at 75°and 90°has the greatest influence on the vehicle-bridge system.For ride comfort index,when pre-set wind speed(α=75°)reaches 20 m/s,the vertical acceleration firstly exceeds the limit value;when wind speed(α=90°)reaches 21.5 m/s,the lateral acceleration firstly exceeds the limit value,and the ride comfort of the vehicle cannot be guaranteed.For running safety index,when pre-set wind speed(α=75°)reaches 24.6 m/s,the wheel unloading coefficient firstly exceeds the limit;when pre-set wind speed(α=90°)reaches 24.5 m/s,the derailment coefficient firstly exceeds the limit,and the running safety cannot be guaranteed.The results can provide a suitable reference for the safe and stable operation of trains on the bridge. 展开更多
关键词 wind-train-bridge dynamic system high-speed train crosswind environment single-tower cable-stayed bridge running safety running stability
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溇水河特大桥斜拉扣挂施工扣背索索力计算方法研究
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作者 张小宇 马旭明 +2 位作者 许蔚 温金龙 吴永红 《桥梁建设》 北大核心 2025年第4期173-179,共7页
溇水河特大桥为跨径310 m的钢桁架不对称两铰拱桥,采用斜拉扣挂法施工。若采用常规方法计算该桥扣背索索力,成拱线形偏差较大、成拱过程结构调整频繁。为提高成拱线形与目标线形吻合精度,避免施工过程中反复调索,提出大跨拱桥扣背索索... 溇水河特大桥为跨径310 m的钢桁架不对称两铰拱桥,采用斜拉扣挂法施工。若采用常规方法计算该桥扣背索索力,成拱线形偏差较大、成拱过程结构调整频繁。为提高成拱线形与目标线形吻合精度,避免施工过程中反复调索,提出大跨拱桥扣背索索力全程约束计算方法。该方法首先基于有限元法及影响矩阵法,考虑斜拉扣挂与扣塔、拱肋结构的耦合作用,推导出有索、无索结构变形与索力之间的关系;然后通过拱肋线形、塔偏及索力的施工全过程同时约束,构建全局最优索力调整非线性规划模型,求解符合目标线形要求的计算工况全局最优扣背索初拉力;最后采用无应力状态法和倒装迭代法,反推出实际施工工况扣背索初拉力。将该方法应用于溇水河特大桥施工控制,结果表明:该方法指导下,溇水河特大桥扣背索一次张拉到位;拱肋计算成拱线形与目标线形吻合度较高;大桥的线形、扣背索索力的实测值与理论值符合度较高,满足设计及规范要求。 展开更多
关键词 拱桥 斜拉扣挂法 扣背索 索力 全程约束 非线性规划模型
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斜拉扣挂悬臂浇筑拱桥扣索力与锚索力确定方法研究 被引量:9
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作者 周水兴 周琳淇 刘彬 《桥梁建设》 EI CSCD 北大核心 2024年第5期140-147,共8页
为解决钢筋混凝土拱桥拱圈悬臂浇筑施工过程中,由悬浇节段自重和挂篮重引起的部分拱圈截面拉应力与塔架偏位过大的问题,提出扣索力与锚索力确定方法。该方法基于应力叠加原理和影响矩阵确定扣索力,给出当拱圈截面拉应力不满足要求时的... 为解决钢筋混凝土拱桥拱圈悬臂浇筑施工过程中,由悬浇节段自重和挂篮重引起的部分拱圈截面拉应力与塔架偏位过大的问题,提出扣索力与锚索力确定方法。该方法基于应力叠加原理和影响矩阵确定扣索力,给出当拱圈截面拉应力不满足要求时的扣索拆除判定方法;提出通过锚索力修正系数主动调控扣索力与锚索力,使塔架产生与拱圈悬浇阶段数值接近、方向相反的偏位,给出能同时满足拱圈应力、塔架偏位和成拱线形要求的扣索力与锚索力的计算流程。以净跨径180 m的混凝土拱桥——毕节白甫河管桥为背景,开展扣索力、锚索力以及锚索力修正系数的计算,对扣索力、锚索力、拱圈应力、成拱线形和两岸塔架偏位的计算值和实测值进行对比验证。结果表明:利用所提方法得到的扣索力、锚索力与实际张拉力最大相差6.02%,该桥施工时,依次拆除5组扣索,使拱圈截面拉应力均满足设计要求;塔架偏位实测最大值为3.3 cm,满足小于最大容许偏位4.0 cm的要求;拱圈截面实测最大拉应力为1.74 MPa,满足小于1.8 MPa的拉应力设计要求,成拱线形与裸拱线形最大偏差为0.5 cm,拱圈线形良好,验证了所提方法的可行性。 展开更多
关键词 混凝土拱桥 斜拉扣挂 悬臂浇筑 扣索力 锚索力 塔架偏位 锚索力修正系数 有限元法
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无背索斜拉桥的概念、设计与施工 被引量:39
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作者 彭旺虎 邵旭东 +1 位作者 李立峰 张阳 《土木工程学报》 EI CSCD 北大核心 2007年第5期26-33,共8页
长沙市洪山大桥是一座无背索斜拉桥,该类型桥梁的受力特性与常规斜拉桥有较大的不同,造成其设计和施工的特殊性。归纳国内外已建和在建的无背索斜拉桥的一般情况,详细论述其塔梁平衡关系和索、塔倾角的取用准则,根据优化塔、索造价和降... 长沙市洪山大桥是一座无背索斜拉桥,该类型桥梁的受力特性与常规斜拉桥有较大的不同,造成其设计和施工的特殊性。归纳国内外已建和在建的无背索斜拉桥的一般情况,详细论述其塔梁平衡关系和索、塔倾角的取用准则,根据优化塔、索造价和降低塔重偏差对塔身受力的影响来可以得到塔的合理倾角。进一步介绍洪山大桥的主梁类型和截面型式、若干构造细节和施工过程,分析研究表明钢-混凝土组合脊骨梁更能够适应无背索斜拉桥的受力特点,并具有造价和技术优势;主跨两端特殊的构造设计可以保证塔梁结合部和主跨-辅助跨过渡段的传力平顺;施工中采用桥面预压工艺可以有效改善桥面板横桥向受力状态。 展开更多
关键词 无背索斜拉桥 概念设计 结构设计 塔梁平衡
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无背索部分斜拉桥斜拉索张拉施工方案分析 被引量:4
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作者 李杰 陈淮 《桥梁建设》 EI CSCD 北大核心 2012年第5期103-108,共6页
为确定无背索部分斜拉桥斜拉索的合理张拉施工方案,以溱水路大桥为例,对该桥斜拉索一次张拉和分级三次张拉的施工方案进行研究。应用MIDAS Civil有限元软件建立该桥空间有限元计算模型,采用数值仿真方法研究斜拉索一次张拉和分级三次张... 为确定无背索部分斜拉桥斜拉索的合理张拉施工方案,以溱水路大桥为例,对该桥斜拉索一次张拉和分级三次张拉的施工方案进行研究。应用MIDAS Civil有限元软件建立该桥空间有限元计算模型,采用数值仿真方法研究斜拉索一次张拉和分级三次张拉对该桥结构力学行为的影响,探讨斜拉索分级张拉施工的合理性,并基于影响矩阵法进行成桥索力调整。结果表明:该桥分级三次张拉斜拉索的施工方案较为有利,且施工可行,成桥后可采用影响矩阵法进行索力调整,仅需较少次数索力调整即可达到索力设计目标,可避免反复进行斜拉索张拉调整的繁琐施工工序。 展开更多
关键词 部分斜拉桥 无背索 波形钢腹板 施工方案 有限元法
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无背索斜拉桥的结构静力平衡特征探讨 被引量:23
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作者 王碧波 《桥梁建设》 EI CSCD 北大核心 2004年第3期23-26,共4页
无背索斜拉桥结构主塔作为悬臂梁来抵挡斜拉索传递的梁面荷载,因此将塔身倾斜组成了梁塔结构的平衡体系。对其平衡受力特点进行直观的简化分析,考察影响平衡度选取的相关因素,并提出了由平衡特征所决定的一些结构基本特性。
关键词 无背索斜拉桥 力学分析 结构分析
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曲线形独塔无背索斜拉桥施工控制关键技术 被引量:19
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作者 易云焜 《桥梁建设》 EI CSCD 北大核心 2018年第2期116-120,共5页
漳州市双鱼岛内环北路桥为跨径(110+25)m的曲线形独塔无背索斜拉桥,采用塔梁墩固结体系,主梁采用钢-混凝土混合梁结构。该桥采用先梁后塔、塔索同步的总体施工方案,为保证成桥后的内力和线形满足设计要求,采用无应力状态控制法对该桥进... 漳州市双鱼岛内环北路桥为跨径(110+25)m的曲线形独塔无背索斜拉桥,采用塔梁墩固结体系,主梁采用钢-混凝土混合梁结构。该桥采用先梁后塔、塔索同步的总体施工方案,为保证成桥后的内力和线形满足设计要求,采用无应力状态控制法对该桥进行施工控制。在该桥施工控制中,通过设置预拱度控制主梁线形;通过设置纵向预偏量和预抛高控制桥塔线形;采用割线法进行索导管倾角修正;通过张拉索力和2次放索控制桥塔内力,斜拉索一次张拉到位;采用"减小张拉索力+调整螺母位置"的方法解决斜拉索的"超长"问题;通过2次放索将张拉索力调整到成桥索力,采用迭代法计算放索之前的目标索力。内环北路桥已建成,成桥后的桥梁线形和内力均符合设计要求。 展开更多
关键词 独塔斜拉桥 无背索桥塔 混合梁 无应力状态控制法 线形 索导管倾角 内力 施工控制
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无背索斜拉桥主塔受力及抗震性能分析 被引量:2
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作者 荀敬川 刘吉诚 +1 位作者 彭晶蓉 李源 《地震工程学报》 CSCD 北大核心 2019年第5期1133-1140,共8页
为探讨主塔横梁对无背索斜拉桥结构的静动力特性影响,以某无背索斜拉桥为原型,采用三维静\,动力有限元计算方法,分析了实心横梁、大空心横梁、小空心横梁与无横梁四种主塔横梁方案的静、动力结构特性。静力计算结果表明:在最不利荷载作... 为探讨主塔横梁对无背索斜拉桥结构的静动力特性影响,以某无背索斜拉桥为原型,采用三维静\,动力有限元计算方法,分析了实心横梁、大空心横梁、小空心横梁与无横梁四种主塔横梁方案的静、动力结构特性。静力计算结果表明:在最不利荷载作用下,四种对比方案中,实心横梁的拉索应力接近安全系数临界值;横梁重量越大,主梁挠度及主塔顺桥向变形值越小,且未设置横梁的方案在长期荷载作用下产生主跨侧的收缩徐变变形值。动力计算结果表明:大空心横梁方案结构横桥向刚度最大塔底轴力最大、横桥向弯矩值最大;无横梁时横桥向剪力最大,且无横梁方案使得主塔刚度较小,阵型易出现主塔横向失稳。综合考虑结构静、动力特性与施工便利性和后期维护,建议该结构采用实心主塔横梁。 展开更多
关键词 桥梁工程 无背索斜拉桥 静动力特性 主塔横梁 有限元分析
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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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新密市溱水路大桥波形钢腹板无背索斜拉桥总体设计 被引量:5
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作者 李宏瑾 《华北水利水电学院学报》 2009年第6期4-7,共4页
在桥型方案确定后,桥梁总体设计是设计者首先考虑的问题.新密市溱水路大桥波形钢腹板无背索斜拉桥的总体设计研究了桥梁结构受力特点,初拟了桥梁主要结构组成,对主体结构进行了初步的结构计算分析,并得出了初算成果,确认了桥型方案的可... 在桥型方案确定后,桥梁总体设计是设计者首先考虑的问题.新密市溱水路大桥波形钢腹板无背索斜拉桥的总体设计研究了桥梁结构受力特点,初拟了桥梁主要结构组成,对主体结构进行了初步的结构计算分析,并得出了初算成果,确认了桥型方案的可行性和结构的合理性.在该桥设计中,首次将波形钢腹板箱梁应用于无背索斜拉桥结构,为波形钢腹板箱梁组合结构在我国的推广应用奠定了基础. 展开更多
关键词 波形钢腹板 无背索斜拉桥 新密市溱水路大桥 大桥总体设计
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