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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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Experimental investigation on seismic performance of rigid frame tied-arch bridge with split-piers 被引量:3
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作者 丁文胜 吕志涛 +2 位作者 刘钊 臧华 李国亮 《Journal of Southeast University(English Edition)》 EI CAS 2006年第4期534-538,共5页
A novel seismic design method, namely split-pier seismic design, is proposed. A vertical gap and connect elements are set in split-piers. The lateral stiffness of piers is reduced by cracking of the connect elements u... A novel seismic design method, namely split-pier seismic design, is proposed. A vertical gap and connect elements are set in split-piers. The lateral stiffness of piers is reduced by cracking of the connect elements under severe earthquake, and the seismic response of bridges is reduced by avoiding the site predominant periods. A model of tied-arch rigid frame bridge with split-piers was designed. Seismic performance was investigated by pseudo-static experimentation on the scale model, The failure process of split-piers, the hysteresis characteristic and the effect of split-piers on the superstructure are presented. Results show that the split-pier has better seismic performance than common ductile piers do. 展开更多
关键词 seismic design split-pier PIER rigid frame tied-arch bridge seismic performance
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Vibration analysis of maglev three-span rigid frame bridge considering magnetic force
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作者 滕延锋 滕念管 寇新建 《Journal of Southeast University(English Edition)》 EI CAS 2007年第4期571-576,共6页
The dynamic interaction between the maglev vehicle and the three-span rigid frame bridge is discussed. With the consideration of magnetic force, the interaction model is developed. Numerical simulations are performed ... The dynamic interaction between the maglev vehicle and the three-span rigid frame bridge is discussed. With the consideration of magnetic force, the interaction model is developed. Numerical simulations are performed to study the dynamic characteristics of the bridge during vehicle movement along the bridge. The results show that a reasonable value of the linear stiffness ratio of columns to beams is between 2. 0 and 3.0. The dynamic responses of the bridge are aggravated with the decrease in bending rigidity and the increase in vehicle speed and the span ratio of the bridge. It is suggested that a definite way is to control impact coefficients and acceleration in the dynamic design of the bridge. It is unsuitable to adopt the moving load model and the moving mass model in the design. The proposed results can serve in the design of high-speed maglev three-span rigid frame bridges. 展开更多
关键词 maglev transportation system three-span rigid frame bridge vertical vibration magnetic force control system
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EARTHQUAKE RESPONSE OF SEMI RIGID FRAME WITH ROTATIONAL DAMPER
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作者 何琦 喻群 刘志强 《Transactions of Tianjin University》 EI CAS 1999年第2期30-35,共6页
The seismic behavior of frames with semi rigid connections and rotational dampers is examined.The ground acceleration due to earthquake is regarded as a stochastic process,and a pseudo excitation algorithm in frequen... The seismic behavior of frames with semi rigid connections and rotational dampers is examined.The ground acceleration due to earthquake is regarded as a stochastic process,and a pseudo excitation algorithm in frequency domain is implemented in a computer program to handle non orthogonal damping properties of the system.The computer program which incorporates detailed connection models and rotational damping models is used to investigate the effect of the connection of the semi rigid frame.It is shown from analytical studies that semi rigid frames with rotational dampers improve the seismic response of the building and may provide an effective and reliable earthquake resistant design solution. 展开更多
关键词 semi rigid frames semi rigid connections rotational dampling earthquake respond pseudo excitation algorithm
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Seismic response analysis of continuous rigid frame bridge considering canyon topography effects under incident SV waves 被引量:8
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作者 Guoliang Zhou Xiaojun Li Xingjun Qi 《Earthquake Science》 CSCD 2010年第1期53-61,共9页
To evaluate the importance of the canyon topography effects on large structures, based on a rigid frame bridge across a 137-m-deep and 600-m-wide canyon, the seismic response of the canyon site is analyzed using a two... To evaluate the importance of the canyon topography effects on large structures, based on a rigid frame bridge across a 137-m-deep and 600-m-wide canyon, the seismic response of the canyon site is analyzed using a two-dimensional finite element model under different seismic SV waves with the assumptions of vertical incidence and oblique incidence to obtain the ground motions, which are used as the excitation input on the pier foundations of the bridge with improved large mass method. The results indicate that canyon topography has significant influences on the ground motions in terms of inci- dent angle. The peak ground acceleration values vary greatly from the bottom of the canyon to the upper comers. Under ver- tical incident SV waves, at the upper comers of canyon the peak ground accelerations greatly increase; whereas the peak ground accelerations diminish at the bottom comers of canyon. Under oblique incident SV waves, the shaking of the canyon slope perpendicular to the incidence direction is much more severe than that of the opposite side of canyon. And the ground surface has been characterized by larger deformations in the case of oblique incident waves. It is also concluded that the low piers and frame of the continuous rigid frame bridge ape more sensitive to the multi-support seismic excitations than the flexible high piers. The canyon topography as well as the oblique incidence of the waves brings the continuous rigid frame bridge severe responses, which should be taken into account in bridge design. 展开更多
关键词 rigid frame bridge canyon topography effect multi-support excitation improved large-mass method seismic response
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Nonlinear Stability Analysis of Long Span Continuous Rigid Frame Bridge with Thin Wall High Piers 被引量:3
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作者 LiLi PengYuancheng LongXiaohong LiaoPing 《Journal of China University of Geosciences》 SCIE CSCD 2005年第1期72-78,共7页
By utilizing the current finite element program ANSYS, two types of finite element models (FEM), the beam model (BM) and shell model (SM), are established for the nonlinear stability analysis of a practical rigid fram... By utilizing the current finite element program ANSYS, two types of finite element models (FEM), the beam model (BM) and shell model (SM), are established for the nonlinear stability analysis of a practical rigid frame bridge—Longtanhe Great Bridge. In these analyses, geometrical and material nonlinearities are simultaneously taken into account. For geometrical nonlinearity, updated Lagrangian formulations are adopted to derive the tangent stiffness matrix. In order to simulate the nonlinear behavior of the plastic hinge of the piers, the multi lines spring element COMBIN39 is used in the SM while the bilinear rotational spring element COMBIN40 is employed in the BM. Numerical calculations show that satisfying results can be obtained in the stability analysis of the bridge when the double coupling nonlinearity effects are considered. In addition, the conclusion is significant for practical engineering. 展开更多
关键词 thin wall high pier rigid frame bridge finite element analysis nonlinear stability.
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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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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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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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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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Protection Design of Hanging Basket for PC Continuous Rigid Frame Bridge with High Pier and Long Span in Mountainous Area
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作者 YUJin LIANGJian +2 位作者 HELiqiang TUXudong SHENJiaxi 《外文科技期刊数据库(文摘版)工程技术》 2022年第3期156-161,共6页
With the promotion of the development strategy of "Chengdu-Chongqing Shuangcheng Economic Circle", the construction of transportation infrastructure in the western mountainous areas is in full swing. With th... With the promotion of the development strategy of "Chengdu-Chongqing Shuangcheng Economic Circle", the construction of transportation infrastructure in the western mountainous areas is in full swing. With the implementation of the new production safety law, the safety management of high-pier and long-span bridges in mountainous areas should not be underestimated. Based on the cantilever casting construction of hanging basket of three continuous rigid frame bridges of B3 mark of Chengkai Expressway, this paper briefly introduces the design points of hanging basket bottom protection platform. Through calculation, the mechanical properties of hanging basket and bottom structure meet the requirements. The successful application of the protective structure can provide reference for the future high-altitude protection of similar projects. 展开更多
关键词 mountainous area rigid frame bridge hanging basket BOTTOM STABILITY
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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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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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高速铁路连续刚构桥惯容减震控制分析
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作者 石赟山 石岩 +1 位作者 丁宇 王学鑫 《防灾科技学院学报》 2026年第1期35-47,共13页
针对高速铁路连续刚构桥在地震作用下易发生轨道构件损伤等问题,以轨道系统构件的损伤阈值为控制目标,开展了基于惯容系统的地震响应控制研究。分别建立了设置惯容-阻尼系统、调谐惯容阻尼器和调谐黏滞质量阻尼器的高速铁路连续刚构桥... 针对高速铁路连续刚构桥在地震作用下易发生轨道构件损伤等问题,以轨道系统构件的损伤阈值为控制目标,开展了基于惯容系统的地震响应控制研究。分别建立了设置惯容-阻尼系统、调谐惯容阻尼器和调谐黏滞质量阻尼器的高速铁路连续刚构桥有限元模型,分析了在多遇、设计及罕遇地震作用下,惯容系统对轨道层间构件及桥墩地震损伤的影响规律。结果表明:惯容系统可显著降低轨道系统构件的位移响应,将构件的损伤控制在损伤阈值内,并有效降低桥墩的侧移角;其中,惯容-阻尼系统和调谐惯容阻尼器在强震作用下表现出更优的减震性能与控制效果。 展开更多
关键词 高速铁路连续刚构桥 轨道-桥梁系统 抗震性能目标 惯容系统 损伤控制
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特大连续刚构桥健康监测系统设计与运用
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作者 贺赛 袁吕 +2 位作者 彭文 何毅 黄纪东 《机电产品开发与创新》 2026年第1期36-39,共4页
在桥梁的服役期间,荷载的作用及环境的侵蚀会对其结构的安全状态产生显著影响。本文主要基于传感器监测技术、物联网技术及大数据分析技术,从健康监测系统总体框架、传感器子系统、数据采集与传输子系统和数据处理、预警及结构安全评估... 在桥梁的服役期间,荷载的作用及环境的侵蚀会对其结构的安全状态产生显著影响。本文主要基于传感器监测技术、物联网技术及大数据分析技术,从健康监测系统总体框架、传感器子系统、数据采集与传输子系统和数据处理、预警及结构安全评估子系统几个方面,以依托工程为背景,设计了特大连续刚构桥健康监测系统,并在工程实例中运用健康监测系统进行为期3个月监测期的实时结构监测,监测结果表明在监测周期内,各测点数据均在阈值范围内,桥梁运行状况良好。本文设计的健康监测系统能够综合实时评价桥梁安全状况,为桥梁安全管理提供重要依据。 展开更多
关键词 高速公路 特大连续刚构桥 健康监测系统 实时监测
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刚构体系中承式梁拱组合桥空间受力研究 被引量:1
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作者 易云焜 徐梦莹 +2 位作者 汪阳 林春乾 张雅俊 《世界桥梁》 北大核心 2025年第2期51-57,共7页
为给超宽多跨刚构体系中承式梁拱组合桥的简化分析和优化设计提供理论基础,以漳州马洲大桥为背景,研究空间受力特性。建立该桥有限元模型,研究超宽多跨刚构体系中承式梁拱组合桥的空间受力特性;针对影响空间受力的3个关键参数(大横梁横... 为给超宽多跨刚构体系中承式梁拱组合桥的简化分析和优化设计提供理论基础,以漳州马洲大桥为背景,研究空间受力特性。建立该桥有限元模型,研究超宽多跨刚构体系中承式梁拱组合桥的空间受力特性;针对影响空间受力的3个关键参数(大横梁横向刚度、拱肋横桥向位置和系杆张拉力),应用参数分析和力学简化分析2种方法得到各参数合理取值,并将数值分析和力学分析的结果相互验证,分析桥宽对结构稳定的影响。结果表明:多跨刚构体系中承式梁拱组合桥会在墩底产生横桥向反力、顺桥向力矩和扭矩等空间力;大横梁和主纵梁的横向刚度比与其长度比成反比例时为其合理横向刚度,使空间力均接近于0;拱肋至道路中心线的距离为2/3半桥宽时,墩底横桥向反力、顺桥向反力矩和竖向反力矩等空间力接近为0,为拱肋的横桥向合理位置;系杆张拉力除应考虑拱肋水平推力,还应考虑桥墩横桥向力矩,并在二者间进行综合平衡;桥宽增加后桥梁结构一阶失稳系数减小,但对一阶失稳模态和竖向失稳荷载基本无影响。 展开更多
关键词 中承式梁拱组合桥 刚构体系 大横梁横向刚度 拱肋横桥向位置 系杆张拉力 参数分析 有限元法
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U形叠箱连续刚构渡槽的温度效应研究
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作者 郭晓东 闫飞 +2 位作者 漆景星 刘修平 任苇 《节水灌溉》 北大核心 2025年第11期13-20,共8页
为揭示新型U形叠箱渡槽非均匀温度场演化机理,阐明连续刚构体系在温度梯度作用下的内力和应力特征,针对现行水工规范尚无明确关于渡槽结构温度梯度模式的指导意见,首先介绍了国内外关于桥梁结构的温度梯度模式及效应计算方法;其次以U形... 为揭示新型U形叠箱渡槽非均匀温度场演化机理,阐明连续刚构体系在温度梯度作用下的内力和应力特征,针对现行水工规范尚无明确关于渡槽结构温度梯度模式的指导意见,首先介绍了国内外关于桥梁结构的温度梯度模式及效应计算方法;其次以U形连续刚构渡槽为例,通过流固耦合瞬态热分析得到渡槽断面温度分布规律,拟合确定渡槽横竖向的温度梯度模式,并将其通过节点温度荷载方式作用于连续刚构渡槽实体有限元模型;最后与国内外桥梁设计规范下的温度效应值比较。研究表明:渡槽通水时的顶板、底板腹板温差变化均大于10℃,最大正温差约24℃,最小负温差约-10℃;拟合得到的渡槽温度梯度模式体现了温差引起的温度梯度非线性;正温度梯度下,箱式构造呈现内部受拉、外部受压的应力分布状态,最大正应力为2.59 MPa,出现在跨中截面底板内侧,负温度梯度下的截面应力分布与正温度梯度相反,最大正应力为2.89 MPa,出现在跨中截面顶板外侧;由新西兰规范得到的渡槽跨度方向的主拉、主压应力值最大,峰值分别达到6.1 MPa和12.0 MPa,渡槽温度模式下的主拉应力次之,峰值为4.3 MPa,位于跨中截面顶板内侧;负温度梯度下,渡槽温度模式下的主拉应力峰值出现在跨中截面底板外侧,数值为3.7 MPa,依次小于公路和新西兰规范计算值。渡槽温度模式下的主压应力值最大,峰值为3 MPa,出现在跨中和靠近边支点区域,在其他位置,主压应力计算值与公路规范计算值接近。 展开更多
关键词 渡槽 温度梯度 温度效应 刚构体系
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内嵌ALC墙板-钢框架体系的滞回及抗裂性能研究 被引量:1
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作者 钟宜宏 陈杰 +3 位作者 鲁军凯 孙伟 刘发起 许航 《建筑钢结构进展》 北大核心 2025年第5期40-47,共8页
ALC墙板已成为装配式建筑结构中一种常用的墙体形式,但在正常使用中经常出现墙体开裂,对建筑的美观和耐久性产生了不利影响。为研究内嵌ALC墙板抗裂性能及其对钢框架受力性能的影响,本文设计两榀足尺单层单跨刚接钢框架-内嵌ALC墙板试... ALC墙板已成为装配式建筑结构中一种常用的墙体形式,但在正常使用中经常出现墙体开裂,对建筑的美观和耐久性产生了不利影响。为研究内嵌ALC墙板抗裂性能及其对钢框架受力性能的影响,本文设计两榀足尺单层单跨刚接钢框架-内嵌ALC墙板试件并进行拟静力试验,墙体与钢框架分别使用内置锚连接和管卡连接两种方式,同时变化不同墙体饰面做法,经过实测得到试件的滞回曲线、骨架曲线、刚度退化曲线并观察试验现象。试验结果表明,两个试件的滞回曲线都是比较饱满的滞回环,内置锚试件的承载力略高于管卡试件的承载力,两种试件都具有良好的协同工作能力。综合考虑承载力和刚度,内置锚试件的抗侧性能优于管卡试件。采用改性双组分MS胶作为ALC墙板和钢框架连接材料,比采用聚氨酯发泡作为连接材料墙体开裂更晚,说明MS胶具有良好的变形能力,有助于提高墙体的抗裂性能。 展开更多
关键词 钢框架-ALC墙板体系 刚接钢框架 拟静力试验 滞回性能 抗裂性能
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平益高速南阳湘江特大桥主桥设计关键技术
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作者 刘勇 王卿 +2 位作者 刘榕 李瑜 陈光 《桥梁建设》 北大核心 2025年第6期145-151,共7页
平益高速南阳湘江特大桥主桥采用(76.3+3×120+76.3)m波形钢腹板组合梁,大桥采用刚构-连续组合体系,中跨主墩采用墩梁固结,其余桥墩设置纵向活动支座。主梁采用单箱单室断面波形钢腹板组合箱梁,根部梁高7.5 m、跨中及边跨现浇段梁高... 平益高速南阳湘江特大桥主桥采用(76.3+3×120+76.3)m波形钢腹板组合梁,大桥采用刚构-连续组合体系,中跨主墩采用墩梁固结,其余桥墩设置纵向活动支座。主梁采用单箱单室断面波形钢腹板组合箱梁,根部梁高7.5 m、跨中及边跨现浇段梁高3.5 m,主梁采用双幅单向布置,单幅梁宽14.5 m。主梁箱梁腹板采用1600型波形钢腹板,钢腹板与混凝土顶板以及横隔板的连接采用Twin-PBL连接件,与混凝土底板的连接采用角钢连接件,与混凝土端横梁及中横梁采用埋入式连接。该桥采用节段预制悬臂拼装施工。悬拼T构单侧分为13个悬拼节段,节段划分为(5×3.2+8×4.8)m。节段拼装缝界面设置高4 cm剪力键,界面采用改性环氧树脂类高触变性高强拼缝胶胶结。主梁采用体内与体外预应力相结合的方式。下部结构采用空心墩,双圆形承台桩基础。经验算,桥梁结构施工和运营阶段受力均满足规范要求。梁段采用部分长线法预制、通过运梁船运送至桥位、桥面吊机悬臂拼装施工,基础采用∞形双壁钢围堰施工。 展开更多
关键词 刚构-连续组合体系 组合梁 波形钢腹板 连接件 悬臂拼装 体外预应力 受力性能 桥梁设计
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轨道-连续刚构桥系统地震损伤评价 被引量:1
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作者 翟展胜 《工程抗震与加固改造》 北大核心 2025年第2期105-114,共10页
以一座铁路中小跨径连续刚构桥为研究背景,考虑轨道约束效应,建立(24+24)m+(24+24+6.5+24+24)m两联CRTSⅡ型无砟轨道-连续刚构桥一体化有限元模型,研究8度三水准地震动作用下桥梁结构和轨道系统水平方向的损伤状况。结果表明:墩顶截面... 以一座铁路中小跨径连续刚构桥为研究背景,考虑轨道约束效应,建立(24+24)m+(24+24+6.5+24+24)m两联CRTSⅡ型无砟轨道-连续刚构桥一体化有限元模型,研究8度三水准地震动作用下桥梁结构和轨道系统水平方向的损伤状况。结果表明:墩顶截面比墩底截面更容易发生破坏,圆形截面是桥梁结构的薄弱构件,并且在横桥向地震作用下优先破坏;8度地震下主梁不会出现碰撞;滑动层是轨道系统最薄弱的构件,CA砂浆层次之,三者中扣件是最不易破坏的结构;轨道系统的损伤主要表现为桥梁与路基连接处以及梁缝处滑动层的破坏;主梁右侧是钢轨横向相对变形最严重的区域,在罕遇地震作用下需要采取临时补修和限速措施,而主梁左侧和梁缝处的钢轨均满足行车安全要求。 展开更多
关键词 连续刚构桥 桥梁-轨道系统 地震响应 高速铁路 损伤状况
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