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谈谈桥梁线性在梁板预制及安装中的控制 被引量:3
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作者 宋继增 《山西交通科技》 2010年第1期59-61,65,共4页
介绍了先简支后连续或简支梁桥的线性在梁板预制及安装中的控制及注意事项,供广大同仁参考使用,学习提高精细化施工。
关键词 桥梁线性 梁板 预制 控制
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基于反应谱法的非线性连续桥梁抗震设计安全性分析
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作者 郑成福 《福建交通科技》 2024年第3期50-53,共4页
地震灾害是自然条件对交通系统安全性的检验,桥梁结构在受到震害影响发生倒塌时,将会严重影响交通系统的安全运行。非线性连续桥梁结构设计本身较为复杂,通过结合工程案例,对比反应谱法中两种组合方案的适用性,分析了该类桥梁桥墩的受... 地震灾害是自然条件对交通系统安全性的检验,桥梁结构在受到震害影响发生倒塌时,将会严重影响交通系统的安全运行。非线性连续桥梁结构设计本身较为复杂,通过结合工程案例,对比反应谱法中两种组合方案的适用性,分析了该类桥梁桥墩的受力变形规律,并进行了抗倾覆能力及抗剪强度的安全性验算。结果表明:在不同角度的地震荷载作用下,该类桥梁桥墩在主桥及引桥交界处表现出明显的横桥向倾覆,顺桥向整体表现为较大的剪切力。因此,在设计时应合理验证设计结果的安全性,通过优化设计以达到抗震设防的要求。 展开更多
关键词 反应谱法 线性桥梁 抗震设计 安全性验证
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浅谈桥梁支架预压在荆岳长江公路大桥施工中的应用
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作者 鲜成 《江西建材》 2016年第7期143-144,共2页
随着科学发展进步,不同的桥梁结构形式、先进的生产技术被广泛应用,在注重桥梁内在质量的同时,线性、外观等质量也尤为重要,本文以荆岳长江公路大桥过渡孔现浇箱梁为例,通过支架预压,科学计算出支架弹性变形沉降量,为施工预拱度提供准... 随着科学发展进步,不同的桥梁结构形式、先进的生产技术被广泛应用,在注重桥梁内在质量的同时,线性、外观等质量也尤为重要,本文以荆岳长江公路大桥过渡孔现浇箱梁为例,通过支架预压,科学计算出支架弹性变形沉降量,为施工预拱度提供准确可靠的数据,也是作为改善桥梁外观线性的重要指标之一。 展开更多
关键词 桥梁线性 支架预压 弹性变形 应用
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无砟轨道高速铁路桥梁线形控制技术研究
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作者 王立朋 《建筑技术开发》 2018年第16期51-52,共2页
分析无砟轨道高速铁路桥梁线形控制技术,如顶面高程、整齐性特征制订无砟轨道桥梁顶面线性控制与混凝土浇筑后的梁面标高计算公式。以某工程为例,运用灰色理论和自适应控制对其桥梁挠度与预拱度进行探讨,线性控制实践证明,梁顶面线性控... 分析无砟轨道高速铁路桥梁线形控制技术,如顶面高程、整齐性特征制订无砟轨道桥梁顶面线性控制与混凝土浇筑后的梁面标高计算公式。以某工程为例,运用灰色理论和自适应控制对其桥梁挠度与预拱度进行探讨,线性控制实践证明,梁顶面线性控制适合应用在无砟轨道高速铁路桥梁施工中。 展开更多
关键词 无砟轨道 高速铁路 桥梁线性控制 技术研究
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连续梁桥多车辆车-桥耦合非线性动力分析 被引量:2
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作者 袁家冬 李雪峰 沈阳超 《合肥工业大学学报(自然科学版)》 CAS 北大核心 2020年第9期1250-1255,共6页
针对连续梁桥在考虑桥梁自身非线性条件下的多车辆车-桥耦合振动响应问题,文章采用达朗贝尔原理建立了车辆模型的振动方程,基于欧拉-伯努利梁假设推导出桥梁的非线性振动方程;利用伽辽金法对多车辆车-桥耦合系统的非线性动力平衡方程组... 针对连续梁桥在考虑桥梁自身非线性条件下的多车辆车-桥耦合振动响应问题,文章采用达朗贝尔原理建立了车辆模型的振动方程,基于欧拉-伯努利梁假设推导出桥梁的非线性振动方程;利用伽辽金法对多车辆车-桥耦合系统的非线性动力平衡方程组进行了简化,并运用Newmark法借助Matlab进行了数值求解;最后通过具体算例探讨了多车辆匀速行驶时行车数目、行车间距对桥梁动态响应值的影响。数值分析结果表明:连续梁桥跨中的动态响应值会随着行车间距的增加先增大后减小,同样也随着行车数目的增多先增大后减小。 展开更多
关键词 连续梁桥 桥梁线性 车桥耦合振动 多车辆 欧拉-伯努利梁
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Nonlinear analysis of pounding between decks of multi-span bridge subjected to multi-support and multi-dimensional earthquake excitation
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作者 张海 焦莉 林君南 《Journal of Central South University》 SCIE EI CAS 2013年第9期2546-2554,共9页
The nonlinear analysis of pounding between bridge deck segments subjected to multi-support excitations and multi-dimensional earthquake motion was performed.A novel bottom rigid element(BRE)method of the current displ... The nonlinear analysis of pounding between bridge deck segments subjected to multi-support excitations and multi-dimensional earthquake motion was performed.A novel bottom rigid element(BRE)method of the current displacement input model for structural seismic analysis under the multi-support excitations was used to calculate structural dynamic response.In the analysis,pounding between adjacent deck segments was considered.The seismic response of a multi-span bridge subjected to the multi-support excitation,considering not only the traveling-wave effect and partial coherence effect,but also the seismic non-stationary characteristics of multi-support earthquake motion,was simulated using finite element method(FEM).Meanwhile,the seismic response of the bridge under uniform earthquake was also analyzed.Finally,comparative analysis was conducted and some calculation results were shown for pounding effect,under multi-dimensional and multi-support earthquake motion,when performing seismic response analysis of multi-span bridge.Compared with the case of uniform/multi-support/multi-support and multi-dimensional earthquake input,the maximum values of pounding force in the case of multi-support and multi-dimensional earthquake input increase by about 5 8 times;the absolute value of bottom moment and shear force of piers increase by about50%600%and 23.1%900%,respectively.A conclusion can be given that it is very necessary to consider the pounding effect under multi-dimensional and multi-support earthquake motion while performing seismic response analysis of multi-span bridge. 展开更多
关键词 POUNDING bridge bottom rigid method (BRE) multi-dimensional and multi-support earthquake motion
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Seismic Performance of Bridges with Different Pier Heights: Longitudinal Analysis of an Existing Bridge
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作者 Joao Coimbra Sampayo Carlos Sousa Oliveira 《Journal of Civil Engineering and Architecture》 2015年第6期635-643,共9页
This paper is dedicated to the study of the seismic performance of an existing RC (reinforced concrete) bridge localized in a region of moderate seismicity. The bridge has six spans and piers with very different hei... This paper is dedicated to the study of the seismic performance of an existing RC (reinforced concrete) bridge localized in a region of moderate seismicity. The bridge has six spans and piers with very different heights, three of which are monolithically connected to the deck. To understand the roles of the different pier sizes in the overall behavior, several analyses were carried out in the longitudinal direction: (1) linear dynamic approach; (2) non-linear static approach; (3) non-linear dynamic approach. Linear dynamic analysis was made in order to design the bridge for the ultimate limit state considering the largest value of the ductility factor. No safety verification was made for the other loads. Using non-linear static analyses, sensitivity was performed to check the influence of reinforcement quantities of each pier on the overall behavior of the bridge under Lisbon seismic action. For the non-linear dynamic approach, a series of strong motion records compatible with the EC-8 spectrum for Lisbon area were generated. The very same combinations of reinforcement quantities were studied. Comparisons between static and dynamic non-linear analysis were made to confirm the validity of the first one in the case under analysis, where the period of vibration is quite high. 展开更多
关键词 RC bridge seismic behavior linear methods non-linear methods.
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Superposability of unsteady aerodynamic loads on bridge deck sections 被引量:2
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作者 张志田 葛耀君 张伟峰 《Journal of Central South University》 SCIE EI CAS 2013年第11期3202-3215,共14页
The 2-dimensional unsteady aerodynamic forces,in the context of both a thin airfoil where theory of potential flow is always applicable and a bluff bridge-deck section where separated flow is typically induced,are inv... The 2-dimensional unsteady aerodynamic forces,in the context of both a thin airfoil where theory of potential flow is always applicable and a bluff bridge-deck section where separated flow is typically induced,are investigated from a point of view of whether or not they conform to the principle of linear superposition in situations of various structural motions and wind gusts.It is shown that some basic preconditions that lead to the linear superposability of the unsteady aerodynamic forces in cases of thin airfoil sections are no longer valid for a bluff section.Theoretical models of bridge aerodynamics such as the one related to flutter-buffeting analysis and those concerning aerodynamic admittance(AA)functions,however,necessitate implicitly this superposability.The contradiction revealed in this work may throw light on the perplexing problem of AA functions pertaining to the description of buffeting loads of bridge decks.Some existing theoretical AA models derived from flutter derivatives according to interrelations valid only for thin airfoil theories,which have been employed rather extensively in bridge aerodynamics,are demonstrated to be illogical.Finally,with full understanding of the preconditions of the applicability of linear superposability of the unsteady aerodynamic forces,suggestions in regard to experiment-based AA functions are presented. 展开更多
关键词 bridge unsteady load aerodynamic load SUPERPOSITION BUFFETING FLUTTER
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Influence of Random Track Irregularities on Dynamic Response of Bridge/Track Structure/High-Speed Train Systems
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作者 Marian Klasztomy Monika Podwoma 《Journal of Civil Engineering and Architecture》 2014年第10期1335-1352,共18页
Random vertical track irregularities are one of essential vibration sources in bridge, track structure and high-speed train systems. The common model of such irregularities is a stationary and ergodic Gaussian process... Random vertical track irregularities are one of essential vibration sources in bridge, track structure and high-speed train systems. The common model of such irregularities is a stationary and ergodic Gaussian process. The study presents the results of numerical dynamic analysis of advanced virtual models of composite BTT (bridge/ballasted track structure/high-speed train) systems. The analysis has been conducted for a series of types of single-span simply-supported railway composite (steel-concrete) bridges, with a symmetric platform, located on lines with ballasted track structure adapted for high-speed trains. The bridges are designed according to Polish bridge standards. A new methodology of numerical modeling and simulation of dynamic processes in BTT systems has been applied. The methodology takes into consideration viscoelastic suspensions of rail-vehicles, nonlinear Hertz wheel-rail contact stiffness and one-side wheel-rail contact, physically nonlinear elastic-damping properties of the track structure, random vertical track irregularities, approach slabs and other features. Computer algorithms of FE (finite element) modeling and simulation were programmed in Delphi. Both static and dynamic numerical investigations of the bridges forming the series of types have been carried out. It has been proved that in the case of common structural solutions of bridges and ballasted track structures, it is necessary to put certain limitations on operating speeds, macadam ballast and vertical track roughness. 展开更多
关键词 Steel-concrete composite bridge ballasted track structure high-speed passenger train random vertical track irregularities numerical analysis.
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Linear monitoring for cast-in-place reinforced concrete arch bridge construction 被引量:1
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作者 ZHENG Yifeng CAO Yu WANG Yuanyuan 《Global Geology》 2012年第2期145-150,共6页
Linear monitoring is an important link of bridge construction control,which is conducted in key processes of construction to ensure the security of bridge in construction procedure. Combining with main arch constructi... Linear monitoring is an important link of bridge construction control,which is conducted in key processes of construction to ensure the security of bridge in construction procedure. Combining with main arch construction monitoring program of No. 2 bridge in north district of Changbai international tourism resort,main content and key technologies are recommended. Considering the various influential factors during the construction process,linear adjustment is handled to ensure that the stress and linear of main arch meet design requirements. 展开更多
关键词 arch box linear monitoring pre-loading pressure bailey beam
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Aerodynamic problems of cable-stayed bridges spanning over one thousand meters 被引量:1
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作者 Chen Airong Ma Rujin Wang Dalei 《Engineering Sciences》 EI 2009年第3期16-22,共7页
The elongating of cable-stayed bridge brings a series of aerodynamic problems. First of all,geometric nonlinear effect of extreme long cable is much more significant for cable-stayed bridge spanning over one thousand ... The elongating of cable-stayed bridge brings a series of aerodynamic problems. First of all,geometric nonlinear effect of extreme long cable is much more significant for cable-stayed bridge spanning over one thousand meters. Lateral static wind load will generate additional displacement of long cables,which causes the decrease of supporting rigidity of the whole bridge and the change of dynamic properties. Wind load,being the controlling load in the design of cable-stayed bridge,is a critical problem and needs to be solved. Meanwhile,research on suitable system between pylon and deck indicates fixed-fixed connection system is an effective way for improvement performance of cable-stayed bridges under longitudinal wind load. In order to obtain aerodynamic parameters of cable-stayed bridge spanning over one thousand meters,identification method for flutter derivatives of full bridge aero-elastic model is developed in this paper. Furthermore,vortex induced vibration and Reynolds number effect are detailed discussed. 展开更多
关键词 cable-stayed bridge dynamic properties suitable system between pylon and deck Reynolds number effect flutter derivatives
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Study on the Mechanical Properties of Irregular Curved Steel Box Girder for City Viaduct
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作者 XijunYin 《International Journal of Technology Management》 2014年第1期46-48,共3页
This paper deeply analyses the influence of different local tectonic on stress performance of spatial curved steel box Girder Bridge, using the finite element analysis software to establish space finite element model ... This paper deeply analyses the influence of different local tectonic on stress performance of spatial curved steel box Girder Bridge, using the finite element analysis software to establish space finite element model of this bridge, calculation and analysis were made on the bridge of the strength, stiffness. It has certain reference value for guiding engineering design, have a good foundation for the mechanical properties and stability of linear and nonlinear further study of curved steel box girder. 展开更多
关键词 elastic buckling analysis U rib bridge deck curved steel box girder
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