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Maintenance Management Research of a Large-span Continuous Rigid Frame Bridge Based on Reliability Assessment by Using Strain Monitored Data 被引量:2
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作者 Yinghua Li Kesheng Peng +2 位作者 Junyong He Qiangjun Shuai Gang Zou 《Journal of Architectural Environment & Structural Engineering Research》 2021年第2期20-31,共12页
When the bridge components needing maintenance are the world problem at present,and the health monitoring system is considered to be a very help­ful tool for solving this problem.In this paper,a large number of s... When the bridge components needing maintenance are the world problem at present,and the health monitoring system is considered to be a very help­ful tool for solving this problem.In this paper,a large number of strain data acquired from the structural health monitoring system(SHMS)installed on a continuous rigid frame bridge are adopted to do reliability assessment.Firstly,a calculation method of punctiform time-dependent reliability is proposed based on the basic reliability theory,and introduced how to cal­culate reliability of the bridge by using the stress data transformed from the strain data.Secondly,combined with“Three Sigma”principle and the basic pressure safety reserve requirement,the critical load effects distribu­tion function of the bridge is defined,and then the maintenance reliability threshold for controlling the unfavorable load state which appears in the early operation stage of this type bridge is suggested,and then the combi­nation of bridge maintenance management and health monitoring system is realized.Finally,the transformed stress distribution certifies that the load effects of concrete bridges practically have a normal distribution;as for the concrete continuous rigid frame bridge with C50 strength grade concrete,the retrofit reliability threshold should be valued at 6.13.The methodology suggested in this article can help bridge engineers do effective maintenance of bridges,which can effectively extend the service life of the bridge and bring better economic and social benefits. 展开更多
关键词 Structural health monitoring Punctiform time-varying reliability Critical load effects distribution function Maintenance reliability threshold continuous rigid frame bridge “Three Sigma”principle
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Analytical Research on Deformation Monitoring of Large Span Continuous Rigid Frame Bridge during Operation 被引量:3
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作者 Aicheng Shan 《Engineering(科研)》 2015年第8期477-487,共11页
Based on a large span continuous rigid frame bridge in Chongqing of China, the main pier vertical displacement and deviation, the bridge deck alignment and the expansion joint deformation are analytically researched d... Based on a large span continuous rigid frame bridge in Chongqing of China, the main pier vertical displacement and deviation, the bridge deck alignment and the expansion joint deformation are analytically researched during operation. Firstly, the monitoring content and method of the large span continuous rigid frame bridge are clearly stated. Secondly, by finite element software Midas Civil, the relevant deformation values of the bridge are calculated. Thirdly, in practice, the relevant deformation values of the bridge are measured. Finally, the measured values in practice are compared with the calculated ones by the finite element software Midas Civil, finding that the former is less than the latter, and it can be concluded that the bridge is basically in the normal working condition. In this paper, the analytical research on the deformation monitoring can provide the basis for similar bridges, which has good practical significance. 展开更多
关键词 continuous rigid frame bridge DEFORMATION Monitoring Main PIER Vertical DISPLACEMENT and Deviation bridge DECK Alignment Expansion Joint DEFORMATION
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Stability Analysis of Long-Span Continuous Rigid Frame Bridge with Thin-Wall Pier 被引量:1
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作者 何波 史雅楠 +2 位作者 朱宏平 郭文增 陈勇 《Journal of Southwest Jiaotong University(English Edition)》 2008年第3期247-253,共7页
During cantilever cast in construction of high-pier and large-span continuous rigid frame bridges, structural stability in the longest cantilevered stage is very important. Based on a practical design case of a large-... During cantilever cast in construction of high-pier and large-span continuous rigid frame bridges, structural stability in the longest cantilevered stage is very important. Based on a practical design case of a large-span continuous rigid frame bridge in Wuhan, the longest span stability coefficient is calculated with linear-buckling and nonlinear-buckling methods, respectively. The influences of both geometrical nonlinearity and the dual nonlinearity of material and geometry are considered. Numerical results indicate that the nonlinear solution is necessary to stability analysis because linear buckling loads are much higher than those of nonlinear buckling. Thus, the edge fiber yield criterion is more convenient and faster than ultimate loading criterion when estimating nonlinear stability of structure, and can be used easily in the initial engineering design. 展开更多
关键词 continuous rigid frame bridge STABILITY Nonlinear buckling Edge fiber yield criterion
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Seismic analysis of long-span continuous rigid frame bridges in cold regions:a case study of Bridge 1 in north of international tourism resort in Changbai Mountain 被引量:1
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作者 YIN Xiao WU Di 《Global Geology》 2015年第2期117-121,共5页
It is helpful to improve the seismic design theory of long-span continuous bridges for studying the seismic performance of each cantilever construction state.Taking the Bridge 1 in the north of Changbai-Mountain inter... It is helpful to improve the seismic design theory of long-span continuous bridges for studying the seismic performance of each cantilever construction state.Taking the Bridge 1 in the north of Changbai-Mountain international tourism resort as an example,the authors studied it in shutdown phase and the cantilever construction process,established the simulation model by using Midas / civil,and analyzed time-history of each construction stage for the bridge.The study shows that long-span bridge cantilever construction in northeastern China can be divided into two-year tasks for construction(suspending in winter).It is needed to think about seismic stability of the cantilever position in shut-down phase of winter.The effect of longitudinal vibration is the most disadvantageous influence to bridge,and its calculation results can provide reference for seismic design of similar bridges in the future. 展开更多
关键词 long-span continuous rigid frame bridge TIME-HISTORY seismic analysis cold region
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Time-varying Reliability Analysis of Long-span Continuous Rigid Frame bridge under Cantilever Construction Stage based on the Monitored Strain Data 被引量:1
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作者 Yinghua Li Kesheng Peng +1 位作者 Lurong Cai Junyong He 《Journal of Architectural Environment & Structural Engineering Research》 2020年第1期5-16,共12页
In general,the material properties,loads,resistance of the prestressed concrete continuous rigid frame bridge in different construction stages are time-varying.So,it is essential to monitor the internal force state wh... In general,the material properties,loads,resistance of the prestressed concrete continuous rigid frame bridge in different construction stages are time-varying.So,it is essential to monitor the internal force state when the bridge is in construction.Among them,how to assess the safety is one of the challenges.As the continuous monitoring over a long-term period can increase the reliability of the assessment,so,based on a large number of monitored strain data collected from the structural health monitoring system(SHMS)during construction,a calculation method of the punctiform time-varying reliability is proposed in this paper to evaluate the stress state of this type bridge in cantilever construction stage by using the basic reliability theory.At the same time,the optimal stress distribution function in the bridge mid-span base plate is determined when the bridge is closed.This method can provide basis and direction for the internal force control of this type bridge in construction process.So,it can reduce the bridge safety and quality accidents in construction stages. 展开更多
关键词 continuous rigid frame bridge Structural health monitoring Construction stage Punctiform time-varying reliability Strain data preprocessing
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Effect of concrete creep on pre-camber of continuous rigid-frame bridge
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作者 贺国京 李媛媛 +1 位作者 邹中权 段靓靓 《Journal of Central South University》 SCIE EI CAS 2008年第S1期337-341,共5页
The effect of concrete creep on the pre-camber of a long-span pre-stressed concrete continuous rigid-frame bridge constructed by cantilever casting method was investigated.The difference of creep coefficients calculat... The effect of concrete creep on the pre-camber of a long-span pre-stressed concrete continuous rigid-frame bridge constructed by cantilever casting method was investigated.The difference of creep coefficients calculated with two Chinese codes was discussed.Based on the calculations,the pre-camber of a pre-stressed concrete continuous rigid-frame box bridge was computed for construction control purpose.The results show that the short-term creep coefficient and long-term creep coefficient calculated with the CC-1985 are larger than those calculated with the CC-2004,while the medium-term creep coefficient calculated with the CC-1985 is smaller than that calculated with the CC-2004.The difference of creep deformation calculated with these two codes is small,and the influences of concrete creep on the pre-camber for most of the segments are negligible.The deflections and stresses of the box girder measured during the construction stages agree very well with the predictions. 展开更多
关键词 CREEP pre-stressed concrete continuous rigid-frame bridge CANTILEVER CASTING method PRE-CAMBER
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Load Test Analysis and Research on Long-Span Concrete Continuous Rigid Frame Bridge
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作者 Lin Nan Yan Liu +3 位作者 Guangjun Li Yingying Ye Shuguo Wang Qiang Yang 《Journal of Architectural Research and Development》 2023年第2期53-58,共6页
Based on the as-built load test of a large bridge,this paper introduces the procedure of the prestressed concrete continuous rigid frame bridge load test.Numerical analysis of the bridge was carried out by simulating ... Based on the as-built load test of a large bridge,this paper introduces the procedure of the prestressed concrete continuous rigid frame bridge load test.Numerical analysis of the bridge was carried out by simulating and establishing a finite element model,and comparative analysis was carried out with the measured values.The results show that the calculated values were basically consistent with the measured values,which showed that the establishment method of the model was reasonable,and the mechanical performance of the bridge met the service requirements of the designed live load. 展开更多
关键词 bridge continuous rigid frame Load test
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Research on Construction Control Measures of Continuous Rigid Frame Bridge
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作者 YANGJian 《外文科技期刊数据库(文摘版)工程技术》 2022年第6期206-210,共5页
In bridge engineering, continuous rigid frame bridge generally has at least two piers and beams, and the construction is mainly prestressed concrete, which has the remarkable characteristics of T-shaped steel bridge a... In bridge engineering, continuous rigid frame bridge generally has at least two piers and beams, and the construction is mainly prestressed concrete, which has the remarkable characteristics of T-shaped steel bridge and continuous beam bridge. In addition, the continuous rigid frame bridge has good consolidation and can provide fixed end bending moment. Therefore, the mid-span bending moment of the continuous rigid frame bridge is smaller than that of the corresponding continuous beam and can reach a larger span. The continuous rigid frame bridge is generally applied to long-span bridges and cross-sea bridges in mountainous areas. Continuous rigid frame bridge has beautiful line shape, comfortable driving, economical and convenient maintenance, and is widely used in the construction of long-span prestressed concrete bridges. 展开更多
关键词 continuous rigid frame bridge CONSTRUCTION control measure
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Fatigue Safety Assessment of Concrete Continuous Rigid Frame Bridge Based on Rain Flow Counting Method and Health Monitoring Data
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作者 Yinghua Li Junyong He +1 位作者 Xiaoqing Zeng Yanxing Tang 《Journal of Architectural Environment & Structural Engineering Research》 2023年第3期31-40,共10页
The fatigue of concrete structures will gradually appear after being subjected to alternating loads for a long time,and the accidents caused by fatigue failure of bridge structures also appear from time to time.Aiming... The fatigue of concrete structures will gradually appear after being subjected to alternating loads for a long time,and the accidents caused by fatigue failure of bridge structures also appear from time to time.Aiming at the problem of degradation of long-span continuous rigid frame bridges due to fatigue and environmental effects,this paper suggests a method to analyze the fatigue degradation mechanism of this type of bridge,which combines long-term in-site monitoring data collected by the health monitoring system(HMS)and fatigue theory.In the paper,the authors mainly carry out the research work in the following aspects:First of all,a long-span continuous rigid frame bridge installed with HMS is used as an example,and a large amount of health monitoring data have been acquired,which can provide efficient information for fatigue in terms of equivalent stress range and cumulative number of stress cycles;next,for calculating the cumulative fatigue damage of the bridge structure,fatigue stress spectrum got by rain flow counting method,S-N curves and damage criteria are used for fatigue damage analysis.Moreover,it was considered a linear accumulation damage through the Palmgren-Miner rule for the counting of stress cycles.The health monitoring data are adopted to obtain fatigue stress data and the rain flow counting method is used to count the amplitude varying fatigue stress.The proposed fatigue reliability approach in the paper can estimate the fatigue damage degree and its evolution law of bridge structures well,and also can help bridge engineers do the assessment of future service duration. 展开更多
关键词 Long-span continuous rigid frame bridge Rain flow counting method Fatigue performance Health monitoring system Strain monitoring data
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Field Load Test Based SHM System Safety Standard Determination for Rigid Frame Bridge
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作者 Xilong Zheng Qiong Wang Di Guan 《Structural Durability & Health Monitoring》 EI 2024年第3期361-376,共16页
The deteriorated continuous rigid frame bridge is strengthened by external prestressing. Static loading tests wereconducted before and after the bridge rehabilitation to verify the effectiveness of the rehabilitation ... The deteriorated continuous rigid frame bridge is strengthened by external prestressing. Static loading tests wereconducted before and after the bridge rehabilitation to verify the effectiveness of the rehabilitation process. Thestiffness of the repaired bridge is improved, and the maximum deflection of the load test is reduced from 37.9 to27.6 mm. A bridge health monitoring system is installed after the bridge is reinforced. To achieve an easy assessmentof the bridge’s safety status by directly using transferred data, a real-time safety warning system is createdbased on a five-level safety standard. The threshold for each safety level will be determined by theoretical calculationsand the outcomes of static loading tests. The highest risk threshold will be set at the ultimate limit statevalue. The remaining levels, namely middle risk, low risk, and very low risk, will be determined usingreduction coefficients of 0.95, 0.9, and 0.8, respectively. 展开更多
关键词 continuous rigid frame bridge REHABILITATION long-term monitoring field load test safety standard determination
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Dynamic Reliability Assessment of Heavy Vehicle Crossing a Prototype Bridge Deck by Using Simulation Technology and Health Monitoring Data
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作者 Yinghua Li Junyong He +1 位作者 Xiaoqing Zeng Yanxing Tang 《Journal of Architectural Environment & Structural Engineering Research》 2022年第4期10-17,共8页
Overloads of vehicle may cause damage to bridge structures,and how to assess the safety influence of heavy vehicles crossing the prototype bridge is one of the challenges.In this report,using a large amount of monitor... Overloads of vehicle may cause damage to bridge structures,and how to assess the safety influence of heavy vehicles crossing the prototype bridge is one of the challenges.In this report,using a large amount of monitored data collected from the structural health monitoring system(SHMS)in service of the prototype bridge,of which the bridge type is large-span continuous rigid frame bridge,and adopting FEM simulation technique,we suggested a dynamic reliability assessment method in the report to assess the safety impact of heavy vehicles on the prototype bridge during operation.In the first place,by using the health monitored strain data,of which the selected monitored data time range is before the opening of traffic,the quasi dynamic reliability around the embedded sensor with no traffic load effects is obtained;then,with FEM technology,the FEM simulation model of one main span of the prototype bridge is built by using ANSYS software and then the dynamic reliability when the heavy vehicles crossing the prototype bridge corresponding to the middle-span web plate is comprehensively analyzed and discussed.At last,assuming that the main beam stress state change is in the stage of approximately linear elasticity under heavy vehicle loads impact,the authors got the impact level of heavy vehicles effects on the dynamic reliability of the prototype bridge.Based on a large number of field measured data,the dynamic reliability value calculated by our proposed methodology is more accurate.The method suggested in the paper can do good for not only the traffic management but also the damage analysis of bridges. 展开更多
关键词 large-span continuous rigid frame bridge Heavy vehicle Dynamic reliability evaluation SHM Finite element simulation technology
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考虑入射角影响的H型超高墩连续刚构桥地震易损性研究
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作者 陈士通 范鑫 +2 位作者 甘平平 郭超群 向敏 《振动与冲击》 北大核心 2025年第5期230-242,313,共14页
相比常规桥梁,H型双柱式超高墩连续刚构桥梁受力更加复杂、高阶振型影响显著、纵横向刚度差异大,地震动入射角是影响其地震响应的关键因素之一,为探究入射角对其易损性的影响,以西部山区某高速铁路三跨超高墩连续刚构桥为研究对象,建立... 相比常规桥梁,H型双柱式超高墩连续刚构桥梁受力更加复杂、高阶振型影响显著、纵横向刚度差异大,地震动入射角是影响其地震响应的关键因素之一,为探究入射角对其易损性的影响,以西部山区某高速铁路三跨超高墩连续刚构桥为研究对象,建立仿真模型开展地震响应分析。基于纵桥向和横桥向开展构件双向易损性分析,同时考虑超高墩、支座对桥梁系统的贡献率,基于一阶可靠度理论构建桥梁复合系统易损性模型,建立桥梁系统易损性曲面,探讨地震动入射角对桥梁系统地震易损性的影响规律。结果表明:纵向地震激励下超高墩相比中、低墩墩身中部损伤概率明显提升,且横桥向峰值曲率与能力需求比不同步,仅凭峰值曲率判断超高墩薄弱部位不能合理评估其抗震性能;墩底部位最不利入射角区间为0°~15°和165°~180°,墩身横系梁部位最不利区间为60°~120°,墩顶部位最不利区间在不同地震动强度下存在变化;支座地震易损性对地震动强度和入射角的变化较为敏感,不同工况地震激励下呈现出不同的损伤趋势且相比桥墩更易出现损伤,设计时应注重横向挡块的力学性能;桥梁系统地震易损性与地震动入射角表现出较强的相关性,最不利入射角区间为75°~105°和255°~285°。 展开更多
关键词 桥梁工程 超高墩连续刚构桥 地震易损性 最不利入射角 震损规律
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大跨双幅刚构-连续梁桥最大双悬臂阶段风致效应分析
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作者 王博 白杨 +2 位作者 郑恒斌 王伟 张敏 《世界桥梁》 北大核心 2025年第2期81-89,共9页
为确保大跨桥梁施工期抗风安全,以沿海地区某主跨200 m的双幅预应力混凝土刚构-连续梁桥为背景,研究其最大双悬臂阶段在双幅邻近主梁气动干扰效应下结构的风致效应。基于计算流体动力学(CFD)技术,考虑双幅主梁间的气动干扰效应计算双幅... 为确保大跨桥梁施工期抗风安全,以沿海地区某主跨200 m的双幅预应力混凝土刚构-连续梁桥为背景,研究其最大双悬臂阶段在双幅邻近主梁气动干扰效应下结构的风致效应。基于计算流体动力学(CFD)技术,考虑双幅主梁间的气动干扰效应计算双幅主梁典型断面处的三分力系数;基于本征正交分解(POD)的脉动风场快速模拟方法和Davenport准定常气动理论,采用抖振时域法计算分析0°风攻角下最大双悬臂阶段桥梁在脉动风作用工况、平均风与脉动风联合作用工况下的位移和应力。结果表明:迎风侧主梁气动力系数显著大于背风侧,采用迎风侧气动力系数作为抗风分析依据;风荷载作用下主梁横、竖向最大瞬态位移响应分别为71.1 mm和43.9 mm,对应挠跨比分别为1/1 392和1/2 255,均小于规范限值1/300;各位置处主梁及主墩考虑施工状态和风荷载作用的累计应力基本均为压应力,最大压应力分别为13.30 MPa和6.27 MPa,均小于规范限值,结构应力状态安全。 展开更多
关键词 刚构-连续梁桥 双幅桥面 气动干扰效应 最大双悬臂阶段 风致效应 抖振时域分析 数值模拟
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连续刚构大体积0号块托架预压技术
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作者 杨凯 《价值工程》 2025年第8期10-12,共3页
针对新建成达万高速铁路渠江特大桥连续刚构0#块托架预压施工,从预压方案比选、预压荷载值计算、反力架结构校验、托架预压、卸载、监测数据分析等关键技术进行了论述,确定了合理的大体积0#块托架预压施工方案,并通过实例证明了利用墩... 针对新建成达万高速铁路渠江特大桥连续刚构0#块托架预压施工,从预压方案比选、预压荷载值计算、反力架结构校验、托架预压、卸载、监测数据分析等关键技术进行了论述,确定了合理的大体积0#块托架预压施工方案,并通过实例证明了利用墩顶反压技术进行托架预压具有安全可靠,科学合理,快速高效的特点,解决了深水高墩大体积0#块托架预压受力复杂、施工技术难度大、安全风险高、成本大的问题,达到了良好的施工效果。墩顶反压技术对今后类似工程的实施具有广泛的推广应用价值。 展开更多
关键词 桥梁 连续刚构0#块 托架 预压
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斜交矮墩连续刚构在跨河景观桥中的应用研究
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作者 曾向往 杜亚光 +1 位作者 钱盈 曹阳 《北方交通》 2025年第3期23-26,30,共5页
连续刚构跨越能力强,稳定性好,在山区高墩桥梁中得到广泛应用。由于大角度斜交桥梁存在梁体爬移的隐患,其多采用墩梁固结。某桥梁位于孝感市,跨老澴河,采用斜交矮墩连续刚构体系实现“莲绽澴水”的景观效果。文章介绍该桥总体方案、结... 连续刚构跨越能力强,稳定性好,在山区高墩桥梁中得到广泛应用。由于大角度斜交桥梁存在梁体爬移的隐患,其多采用墩梁固结。某桥梁位于孝感市,跨老澴河,采用斜交矮墩连续刚构体系实现“莲绽澴水”的景观效果。文章介绍该桥总体方案、结构体系以及主梁与桥墩的构造和线形,并对主梁进行梁格法分析,采用分离式桥墩墩顶扩头、墩梁固结方法,解决了墩顶弯矩大和斜桥爬移的问题。该桥建成后,线形流畅、形态优美,为斜交滨水桥梁景观设计开辟了新思路。 展开更多
关键词 斜交桥 连续刚构 跨河景观桥 结构计算
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动水压力对深水高墩大跨刚构桥地震响应的影响
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作者 陈澳 郑宇杨 王翰涛 《交通科技》 2025年第2期75-81,共7页
为研究深水环境高墩连续刚构桥在动水压力及不同脉冲类型地震动作用下的动力响应,以西南地区某典型深水高墩连续刚构桥为研究对象,基于Opensees有限元软件建立计算模型,采用附加质量法模拟不同的水深环境,在纵桥向输入4种不同类型的地震... 为研究深水环境高墩连续刚构桥在动水压力及不同脉冲类型地震动作用下的动力响应,以西南地区某典型深水高墩连续刚构桥为研究对象,基于Opensees有限元软件建立计算模型,采用附加质量法模拟不同的水深环境,在纵桥向输入4种不同类型的地震动,对桥梁动力响应进行分析,结果表明,随着桥墩水位升高,动水压力会对桥墩的地震响应产生影响,相对于无脉冲和远场地震动,脉冲型地震动对于桥梁的影响更加明显。 展开更多
关键词 连续刚构 地震响应 近场地震动 附加地震
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基于数值模拟对连续刚构桥桥墩的设计及受力分析
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作者 王旭 《黑龙江交通科技》 2025年第2期67-71,共5页
通过数值模拟的方法对其展开分析,主要的分析内容包括连续刚构桥的基本信息、理论分析和模拟结果分析,结果表明:当主梁在整体升降温或活荷载作用情况下,墩差<30 m时对高墩和底墩的受力有利,高低墩受力相差不大,可以满足设计的要求。
关键词 数值模拟 连续刚构桥 桥墩
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连续刚构桥施工控制参数敏感性研究
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作者 秋朋虎 《建筑技术》 2025年第4期450-454,共5页
桥梁结构主要参数值大小会影响桥梁的应力分布程度。以新建玄真大桥为例,采用有限元软件模拟桥梁施工过程,对不同桥梁参数工况进行了应力和变形分析,通过施工现场监测验证数值模拟结果的可靠性。结果表明,主梁重量变化与混凝土收缩徐变... 桥梁结构主要参数值大小会影响桥梁的应力分布程度。以新建玄真大桥为例,采用有限元软件模拟桥梁施工过程,对不同桥梁参数工况进行了应力和变形分析,通过施工现场监测验证数值模拟结果的可靠性。结果表明,主梁重量变化与混凝土收缩徐变对主梁变形的影响明显,弹性模量对主梁挠度变形影响小于对应力影响;应考虑施工过程中混凝土的收缩和徐变影响控制施工参数,进行预拱度。该项研究可为相关变截面桥施工控制技术优化提供参考。 展开更多
关键词 连续刚构桥 数值模拟 参数分析 现场实测
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浅谈山区145米跨连续刚构桥施工技术实践
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作者 王方旭 郭裕强 郭浩田 《工程建设(维泽科技)》 2025年第2期150-154,共5页
文中介绍宜昌附近山区新建高速薄壁空心墩、双肢薄壁空心墩、145米跨连续刚构桥施工案例,针对不同结构的超高墩身采用不同托架和反力架压载方式解决0号段施工,使用菱形挂篮完成悬臂梁施工,同时介绍了主要施工工艺和部分控制参数,为类似... 文中介绍宜昌附近山区新建高速薄壁空心墩、双肢薄壁空心墩、145米跨连续刚构桥施工案例,针对不同结构的超高墩身采用不同托架和反力架压载方式解决0号段施工,使用菱形挂篮完成悬臂梁施工,同时介绍了主要施工工艺和部分控制参数,为类似的桥梁工程提供了一定的参考。 展开更多
关键词 山区桥梁 连续刚构桥 薄壁空心墩 挂篮施工
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双幅共用墩连续刚构桥合龙方案及顶推力计算研究
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作者 周善起 李超 +1 位作者 胡尼芬 孙文强 《建筑技术开发》 2025年第3期120-122,共3页
双幅共用墩连续刚构桥在修建过程中,左右两幅悬臂浇筑顺序、合龙方案与顶推力、收缩徐变等诸多因素对桥梁线形及主墩位移均有影响,为确保成桥后主梁线形、主墩偏位、成桥内力满足设计与规范要求,对两幅桥的合龙方案和顶推力深入研究则... 双幅共用墩连续刚构桥在修建过程中,左右两幅悬臂浇筑顺序、合龙方案与顶推力、收缩徐变等诸多因素对桥梁线形及主墩位移均有影响,为确保成桥后主梁线形、主墩偏位、成桥内力满足设计与规范要求,对两幅桥的合龙方案和顶推力深入研究则显得尤为重要。研究结合重庆市某双层公轨共建高架桥工程实例,建立MIDAS有限元数值模型,分析了上层双幅连续刚构桥不同合龙方案对主梁线形及主墩横向位移的影响,从而得出合理的合龙方案。以此方案为基础,分析成桥10年后收缩徐变等因素影响下的主墩纵向位移,并计算顶推力大小,以期为工程实践起到理论支持。 展开更多
关键词 连续刚构桥 合龙方案 顶推力 有限元仿真
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