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Dynamic Response Impact of Vehicle Braking on Simply Supported Beam Bridges with Corrugated Steel Webs Based on Vehicle-Bridge Coupled Vibration Analysis
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作者 Yan Wang Siwen Li Na Wei 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第6期3467-3493,共27页
A novel approach for analyzing coupled vibrations between vehicles and bridges is presented,taking into account spatiotemporal effects and mechanical phenomena resulting fromvehicle braking.Efficient modeling and solu... A novel approach for analyzing coupled vibrations between vehicles and bridges is presented,taking into account spatiotemporal effects and mechanical phenomena resulting fromvehicle braking.Efficient modeling and solution of bridge vibrations induced by vehicle deceleration are realized using this method.The method’s validity and reliability are substantiated through numerical examples.A simply supported beam bridge with a corrugated steel web is taken as an example and the effects of parameters such as the initial vehicle speed,braking acceleration,braking location,and road surface roughness on the mid-span displacement and impact factor of the bridge are analyzed.The results show that vehicle braking significantly amplifies mid-span displacement and impact factor responses in comparison to uniform vehicular motion across the bridge.Notably,the influence of wheelto-bridge friction forces is of particular significance and cannot be overlooked.When the vehicle initiates braking near the middle of the span,both the mid-span displacement and impact factor of the bridge exhibit substantial increases,further escalating with higher braking acceleration.Under favorable road surface conditions,the midspan displacement and the impact factor during vehicle braking may exceed the design values stipulated by codes.It is important to note that road surface roughness exerts a more pronounced effect on the impact factor of the bridge in comparison to the effects of vehicle braking. 展开更多
关键词 Corrugated steel web girder bridges simply supported beam bridges vehicle-bridge coupled vibration BRAKING impact factor
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Damage Identification in Simply Supported Bridge Based on Rotational-Angle Influence Lines Method 被引量:11
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作者 Yu Zhou Shengkui Di +2 位作者 Changsheng Xiang Wanrun Li Lixian Wang 《Transactions of Tianjin University》 EI CAS 2018年第6期587-601,共15页
To locate and quantify local damage in a simply supported bridge, in this study, we derived a rotational-angle influence line equation of a simply supported beam model with local damage. Using the diagram multiplicati... To locate and quantify local damage in a simply supported bridge, in this study, we derived a rotational-angle influence line equation of a simply supported beam model with local damage. Using the diagram multiplication method, we introduce an analytical formula for a novel damage-identification indicator, namely the diff erence of rotational-angle influence linescurvature(DRAIL-C). If the initial stiff ness of the simply supported beam is known, the analytical formula can be effectively used to determine the extent of damage under certain circumstances. We determined the effectiveness and anti-noise performance of this new damage-identification method using numerical examples of a simply supported beam, a simply supported hollow-slab bridge, and a simply supported truss bridge. The results show that the DRAIL-C is directly proportional to the moving concentrated load and inversely proportional to the distance between the bridge support and the concentrated load and the distance between the damaged truss girder and the angle measuring points. The DRAIL-C indicator is more sensitive to the damage in a steel-truss-bridge bottom chord than it is to the other elements. 展开更多
关键词 Rotational-angle influence lines Damage identification simply supported bridge Curvature. Moving load Anti-noise property
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Effect of temperature difference load of 32 m simply supported box beam bridge on track vertical irregularity 被引量:5
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作者 Kaize Xie Jun Xing +3 位作者 Li Wang Chunxiang Tian Rong Chen Ping Wang 《Journal of Modern Transportation》 2015年第4期262-271,共10页
In order to study the effect of temperature difference load (TDL) along the vertical direction of a simply supported beam bridge section on the vertical irregularity, a rail-bridge-piers calculation model was establ... In order to study the effect of temperature difference load (TDL) along the vertical direction of a simply supported beam bridge section on the vertical irregularity, a rail-bridge-piers calculation model was established. Taking 32 m simply supported box beam bridge which is widely used in the construction of pas- senger dedicated line in China as an example, influences of the temperature variation between the bottom and top of the bridge, temperature curve index, type of temperature gradient, and beam height on track vertical irregularity were analyzed with the model. The results show that TDL has more effects on long wave track irregularity than on short one, and the wavelength mainly affected is approxi- mately equal to the beam span. The amplitude of irregu- larity caused by TDL is largely affected by the temperature variation, temperature curve index, and type of temperature gradient, so it is necessary to monitor the temperaturedistribution of bridges in different regions to provide accurate calculation parameters. In order to avoid the irregularity exceeding the limit values, the height of 32, 48, and 64 m simply supported box beam bridges must not be less than 2.15, 3.2, and 4.05 m, respectively. 展开更多
关键词 simply supported beam bridge Temperaturegradient Vertical irregularity - Beam height
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Wind tunnel measurement of aerodynamic characteristics of trains passing each other on a simply supported box girder bridge 被引量:9
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作者 Xiaozhen Li Yiling Tan +2 位作者 Xiaowei Qiu Zhenhua Gong Ming Wang 《Railway Engineering Science》 2021年第2期152-162,共11页
The aerodynamic performance of high-speed trains passing each other was investigated on a simply supported box girder bridge,with a span of 32 m,under crosswinds.The bridge and train models,modeled at a geometric scal... The aerodynamic performance of high-speed trains passing each other was investigated on a simply supported box girder bridge,with a span of 32 m,under crosswinds.The bridge and train models,modeled at a geometric scale ratio of 1:30,were used to test the aerodynamic forces of the train,with the help of a designed moving test rig in the XNJD-3 wind tunnel.The effects of wind speed,train speed,and yaw angle on the aerodynamic coefficients of the train were analyzed.The static and moving model tests were compared to demonstrate how the movement of the train influences its aerodynamic characteristics.The results show that the sheltering effect introduced by trains passing each other can cause a sudden change in force on the leeward train,which is further influenced by the wind and running speeds.Detailed analyses related to the effect of wind and train speeds on the aerodynamic coefficients were conducted.The relationship between the change in aerodynamic coefficients and yaw angle was finally described by a series of proposed fitting formulas. 展开更多
关键词 Aerodynamic coefficient Two trains passing each other simply supported box girder bridge Wind tunnel
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Seismic analysis of high-speed railway irregular bridge–track system considering V-shaped canyon effect 被引量:4
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作者 Zhihui Zhu Yongjiu Tang +2 位作者 Zhenning Ba Kun Wang Wei Gong 《Railway Engineering Science》 2022年第1期57-70,共14页
To explore the effect of canyon topography on the seismic response of railway irregular bridge-track system that crosses a V-shaped canyon, seismic ground motions of the horizontal site and V-shaped canyon site were s... To explore the effect of canyon topography on the seismic response of railway irregular bridge-track system that crosses a V-shaped canyon, seismic ground motions of the horizontal site and V-shaped canyon site were simulated through theoretical analysis with 12 earthquake records selected from the Pacific Earthquake Engineering Research Center(PEER) Strong Ground Motion Database matching the site condition of the bridge.Nonlinear seismic response analyses of an existing 11-span irregular simply supported railway bridge-track system were performed under the simulated spatially varying ground motions. The effects of the V-shaped canyon topography on the peak ground acceleration at bridge foundations and seismic responses of the bridge-track system were analyzed. Comparisons between the results of horizontal and V-shaped canyon sites show that the top relative displacement between adjacent piers at the junction of the incident side and the back side of the V-shaped site is almost two times that of the horizontal site, which also determines the seismic response of the fastener. The maximum displacement of the fastener occurs in the V-shaped canyon site and is 1.4 times larger than that in the horizontal site. Neglecting the effect of V-shaped canyon leads to the inappropriate assessment of the maximum seismic response of the irregular high-speed railway bridge-track system. Moreover, engineers should focus on the girder end to the left or right of the two fasteners within the distance of track seismic damage. 展开更多
关键词 V-shaped canyon Nonlinear seismic response Irregular bridge simply supported railway bridge Analytical solution Topography effect
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无砟轨道对不同地形下简支梁桥地震反应的影响
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作者 张永亮 刘沛 +1 位作者 王春阳 刘苗 《铁道工程学报》 EI CSCD 北大核心 2024年第7期41-46,共6页
研究目的:为研究CRTSⅡ型板式无砟轨道系统对多跨简支梁桥下部结构地震反应的影响,以32 m简支梁桥为研究对象,分别建立线桥一体化模型与单墩模型,采用反应谱法研究3种典型地形条件下轨道纵向约束效应对桥墩地震反应的影响规律。研究结论... 研究目的:为研究CRTSⅡ型板式无砟轨道系统对多跨简支梁桥下部结构地震反应的影响,以32 m简支梁桥为研究对象,分别建立线桥一体化模型与单墩模型,采用反应谱法研究3种典型地形条件下轨道纵向约束效应对桥墩地震反应的影响规律。研究结论:(1)跨越平坦地形时,受轨道系统与端刺的影响,线桥一体化模型的墩底内力呈边界处小、中跨大的抛物线型分布,与单墩模型相比,中跨区域的桥墩处在地震反应放大区;(2)跨越V字形地形时,该区域各墩底内力呈现临界墩底内力显著增大、中跨高墩的墩底内力明显减小的U字形分布特征;(3)跨越Λ字形地形时,该区域各墩底内力呈现以中跨矮墩为中心、且其墩底内力显著增大、相邻墩底内力明显减小的Λ字形分布特征,中跨矮墩在抗震设计时应加以重视;(4)本研究成果可应用于类似典型地形条件下的高速铁路简支梁桥的抗震设计。 展开更多
关键词 高速铁路 简支梁 线桥一体化模型 桥墩 地震反应
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基于桥梁响应的高速铁路简支梁离心力折减方法
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作者 李奇 揭崇清 +1 位作者 石龙 李克冰 《铁道建筑》 北大核心 2024年第1期65-70,共6页
为分析规范离心力计算公式中竖向活载折减系数的理论来源,建立列车-曲线桥-墩系统的空间模型进行车桥耦合振动仿真计算。提出以桥梁动力响应与设计离心力产生的静力响应之比作为竖向活载折减系数的方法,结合反向传播神经网络分析列车车... 为分析规范离心力计算公式中竖向活载折减系数的理论来源,建立列车-曲线桥-墩系统的空间模型进行车桥耦合振动仿真计算。提出以桥梁动力响应与设计离心力产生的静力响应之比作为竖向活载折减系数的方法,结合反向传播神经网络分析列车车速、桥梁墩高、跨度、曲线半径等因素对折减系数的影响程度。结果表明:车速对折减系数的影响最大,其次为桥梁跨度;竖向活载折减系数反映了列车荷载图式中设计活载与运营列车轴重的差异,折减系数应与列车荷载图式、实际运营列车相匹配;现行规范中竖向活载折减系数公式对中国高速铁路ZK荷载具有良好的适配性,能满足高速铁路简支梁离心力设计的要求。 展开更多
关键词 铁路桥梁 离心力 数值计算 折减系数 简支梁 车桥耦合 桥梁响应
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钢-混凝土组合简支桥面连续结构横向应力分析
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作者 胡志坚 杜威 +1 位作者 樊文胜 周知 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第5期34-45,共12页
针对钢-混组合简支梁桥的桥面连续结构开裂等病害,围绕桥面连接板的横桥向应力问题,采用线弹性理论和板的偏微分方程进行分析,得出了桥面连接板挠度和应力的分布函数,建立非线性有限元模型,并进行实桥荷载试验.通过比较理论解、有限元... 针对钢-混组合简支梁桥的桥面连续结构开裂等病害,围绕桥面连接板的横桥向应力问题,采用线弹性理论和板的偏微分方程进行分析,得出了桥面连接板挠度和应力的分布函数,建立非线性有限元模型,并进行实桥荷载试验.通过比较理论解、有限元解和实测试验结果,证实了理论解和有限元的有效性.根据得到的分布函数,发现横桥向和纵桥向上的最大拉应力出现在钢梁端部位置的连接板的上缘.此外,还分析了连接板区域尺寸变化对横桥向应力峰值的影响,包括纵梁端部距支座的长度、纵梁的间距以及连接板区域整体尺寸变化.结果表明:较小的纵梁间距和较长的纵梁端部与支撑之间的距离会导致连接板中的横向拉应力峰值增加,并提高横向拉应力在总应力中的占比,从而导致桥面连接板早于设计荷载开裂.因此对于纵梁间距较小、梁端长度较长的钢-混组合简支梁桥桥面连续结构,仅计算其纵桥向受力性能会导致计算结果偏危险,建议按照本文方法考虑横桥向应力对桥面连接板的影响. 展开更多
关键词 钢-混凝土组合桥(SCCBs) 桥面连接板 横桥向应力分析 有限元法(FEM) 连续桥面简支梁桥
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Damage Detection for Simply Supported Bridge with Bending Fuzzy Stiffness Consideration 被引量:10
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作者 ZHOU Yu a b +1 位作者 DI Shengkui a XIANG Changsheng a 《Journal of Shanghai Jiaotong university(Science)》 EI 2018年第2期308-319,共12页
The benchmark of a simply supported beam with damage and bending fuzzy stiffness consideration is established to be utilized for damage detection. The explicit expression describing the Rotational Angle Influence Line... The benchmark of a simply supported beam with damage and bending fuzzy stiffness consideration is established to be utilized for damage detection. The explicit expression describing the Rotational Angle Influence Lines(RAIL) of the arbitrary section in the benchmark is presented as the nonlinear relation between the moving load and the RAIL appeared, when the moving load is located on the damage area. The damage detection method is derived based on the Difference of the RAIL Curvature(DRAIL-C) prior to and following arbitrarily section damage in a simply supported beam with bending fuzzy stiffness consideration. The results demonstrate that the damage position can be located by the DRAIL-C graph and the damage extent can be calculated by the DRAIL-C curve peak. The simply supported box girder as a one-dimensional model and the simply supported truss bridge as a three-dimensional model with the bending fuzzy stiffness are simulated for the validity of the proposed method to be verified. The measuring point position and noise intensity effects are discussed in the simply supported box girder example. This paper provides a new consideration and technique for the damage detection of a simply supported bridge with bending fuzzy stiffness consideration. 展开更多
关键词 rotational angle influence lines method simply supported bridge bending fuzzy stiffness damage detection
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跨走滑断层多跨简支梁桥地震反应特征与参数分析
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作者 石岩 王文仙 +2 位作者 赵昊淼 杨雄 柴文阳 《地震研究》 CSCD 北大核心 2024年第3期461-473,共13页
为揭示跨走滑断层多跨简支梁桥的地震响应规律,以1座4跨简支梁桥为研究对象,基于OpenSees建立了3维动力弹塑性分析模型;采用“分解-叠加”法合成40组跨断层地震动,以多点激励的方式输入到建立的动力分析模型,进行非线性动力时程分析,研... 为揭示跨走滑断层多跨简支梁桥的地震响应规律,以1座4跨简支梁桥为研究对象,基于OpenSees建立了3维动力弹塑性分析模型;采用“分解-叠加”法合成40组跨断层地震动,以多点激励的方式输入到建立的动力分析模型,进行非线性动力时程分析,研究了跨走滑断层多跨简支梁桥在地震动作用下的地震反应特征,分析了断层的穿越角度和穿越位置对跨走滑断层多跨简支梁桥地震响应的影响。结果表明:地震动作用下跨走滑断层桥梁结构会发生剧烈的位移反应;断层穿越角度和穿越位置对桥梁地震反应有显著的影响;地震动作用下跨断层简支梁桥的扭转效应不可忽视。 展开更多
关键词 跨断层地震动 多跨简支梁桥 地震响应 地震损伤 参数分析
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预应力效应对中速磁浮线路简支梁车-桥耦合振动响应的影响
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作者 李波 《铁道建筑》 北大核心 2024年第2期62-66,共5页
以长沙磁浮线路简支梁桥为研究对象,建立考虑不同预应力效应的磁浮线路简支梁桥车-桥耦合振动模型,分析预应力效应对中速磁浮线路车-桥耦合振动响应的影响。结果表明:预应力效应的变化对桥梁动力响应影响明显,预应力增加显著加剧桥梁竖... 以长沙磁浮线路简支梁桥为研究对象,建立考虑不同预应力效应的磁浮线路简支梁桥车-桥耦合振动模型,分析预应力效应对中速磁浮线路车-桥耦合振动响应的影响。结果表明:预应力效应的变化对桥梁动力响应影响明显,预应力增加显著加剧桥梁竖向振动加速度,预应力由0.67P0(P0为张拉控制应力)增加到1.33P0时,桥梁跨中竖向最大加速度从0.21 m/s^(2)增至0.44 m/s^(2);车速增加会加剧预应力效应的影响,对桥梁竖向振动加速度的影响尤为明显,车速由20 km/h增加到200 km/h时,在1.00P0作用下,桥梁跨中竖向最大加速度从0.15 m/s^(2)增至0.76 m/s^(2);箱壁局部变形对车-桥耦合竖向振动响应有显著影响,预应力导致的箱壁局部变形不可忽略。 展开更多
关键词 中速磁浮线路 简支梁桥 数值模拟 车-桥耦合振动 预应力效应 动力分析
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铁路桥梁大节段预制胶接拼装简支箱梁施工
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作者 刘凯山 《价值工程》 2024年第26期165-168,共4页
随着铁路交通的快速发展,桥梁建设面临着工期缩短、成本控制和质量提升的需求。大节段预制胶接拼装技术作为一种创新方法,通过预制箱梁的大节段装配和胶接方式,有效地提升了施工效率和桥梁质量。本文详细介绍了该技术在某铁路特大桥项... 随着铁路交通的快速发展,桥梁建设面临着工期缩短、成本控制和质量提升的需求。大节段预制胶接拼装技术作为一种创新方法,通过预制箱梁的大节段装配和胶接方式,有效地提升了施工效率和桥梁质量。本文详细介绍了该技术在某铁路特大桥项目中的应用,包括节段梁的设计、预制、悬挂施工、定位及拼装等关键技术环节。实践证明,采用此技术能显著减少现场作业量,缩短工期,并通过精确的施工控制提高结构的耐久性和安全性。本文旨在通过详细阐述大节段预制胶接拼装简支箱梁的设计与施工过程,为铁路桥梁建设提供创新方法与实践案例,以供业界参考和借鉴。 展开更多
关键词 铁路桥梁 大节段 预制拼装 简支箱梁 胶接拼装
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Probability-based practice-oriented seismic behaviour assessment of simply supported RC bridges considering the variation and correlation in pier performance
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作者 Long Zhang Cao Wang 《Journal of Traffic and Transportation Engineering(English Edition)》 2018年第6期491-502,共12页
Probability-based seismic performance assessment of in-service bridges has gained much attention in the scientific community during the past decades. The nonlinear static pushover analysis is critical for describing t... Probability-based seismic performance assessment of in-service bridges has gained much attention in the scientific community during the past decades. The nonlinear static pushover analysis is critical for describing the seismic behaviour of bridges subjected to moderate to high seismicity due to its simplicity. However, in existing analysis methods,the generation of pushover curve needs tremendous amount of computational costs and requires skills, which may halter its application in practice, implying the importance of developing practice-oriented analysis method with improved efficiency. Moreover, the bridge pier performance has been modelled as deterministic, indicating that the variation associated with the pier material and mechanical properties remains unaddressed. The correlation in the performance of different piers also exists due to the common design provisions and construction conditions but has neither been taken into account. This paper develops a simplified pushover analysis procedure for the seismic assessment of simply supported RC bridges. With the proposed method, the pushover curve of the bridge can be obtained explicitly without complex finite element modelling. A random factor is introduced to reflect the uncertainty in relation to the pushover curve. The correlation in the pier performance is considered by employing the Gaussian copula function to construct the joint probability distribution. Illustrative examples are presented to demonstrate theapplicability of the method and to investigate the impact of variation and correlation in bridge pier behaviour on the seismic performance assessment. 展开更多
关键词 Seismic assessment simply supported RC bridge Nonlinear analysis Simplified method Variation in pier behaviour Correlation in pier behaviour
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列车激励下UHPC简支箱梁桥面板局部振动研究
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作者 孔德睿 张迅 +2 位作者 刘子琦 罗浩 李小珍 《土木工程学报》 EI CSCD 北大核心 2024年第9期56-67,共12页
基于现场试验分析高速列车激励下32m简支PC箱梁的局部振动行为。建立车-轨-桥耦合振动分析模型,计算梁体不同位置的加速度响应,与实测结果进行对比验证其可靠性。采用数值方法研究56m简支UHPC箱梁的局部振动特性,对比不同滤波条件下两... 基于现场试验分析高速列车激励下32m简支PC箱梁的局部振动行为。建立车-轨-桥耦合振动分析模型,计算梁体不同位置的加速度响应,与实测结果进行对比验证其可靠性。采用数值方法研究56m简支UHPC箱梁的局部振动特性,对比不同滤波条件下两种箱梁的振动响应,分析车速对局部振动的影响规律,讨论车桥高阶共振机理及其对行车安全性的影响。研究结果表明:梁体不同位置均表现出局部振动特性,顶板中心和翼板边缘最为显著;UHPC箱梁的局部振动较PC箱梁更剧烈;箱梁在特定速度下出现振动较大的现象,与桥面板局部振动模态和列车激励的高阶共振有关;PC箱梁的局部振动受第6和第7共振速度带影响较大,UPHC箱梁受第3、第6和第7共振速度带影响较大。 展开更多
关键词 高速铁路 UHPC箱梁 局部振动 高阶共振 行车安全性
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洪水作用下高速铁路桥梁动力响应研究
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作者 郭敏 殷鹏程 +2 位作者 勾红叶 谭庄 梁金宝 《铁道标准设计》 北大核心 2024年第8期99-107,共9页
为研究洪水作用对高速铁路桥梁结构动力响应的影响,以两跨不等墩高32 m高速铁路简支梁桥为研究对象,建立洪水作用下桥梁下部结构三维水动力分析模型和桥梁有限元模型,获得桥梁下部结构周围流场分布规律与流水压力荷载,探讨了洪水流速、... 为研究洪水作用对高速铁路桥梁结构动力响应的影响,以两跨不等墩高32 m高速铁路简支梁桥为研究对象,建立洪水作用下桥梁下部结构三维水动力分析模型和桥梁有限元模型,获得桥梁下部结构周围流场分布规律与流水压力荷载,探讨了洪水流速、高度和基础冲刷深度的变化对桥梁动力响应和桩基内力的影响规律。研究表明:(1)不同流速的洪水作用于桥梁下部结构时,周围流场的分布规律总体基本一致;(2)当洪水流速大于3 m/s时,下部结构所受的流水压力对桥梁结构的影响不可忽视,且该压力与洪水作用速度及高度呈正相关;(3)基础冲刷深度对下部结构受到的流水压力影响显著,但当承台裸露后,再增大基础冲刷深度时,流水压力增大不明显;(4)桥梁受到洪水冲击时,桥梁的动力响应随时间变化的总体规律基本一致,其响应具体表现为,墩顶横向加速度在冲击时间1.06 s时达到峰值,墩顶横向位移在冲击时间1.16 s时达到峰值,二者达到峰值后呈周期式迅速衰减,墩顶位移、加速度的峰值和最后稳定值以及桩基弯矩均随着洪水流速、高度的增加而增大;(5)随着基础冲刷深度的增加,桥梁动力响应和桩基弯矩均呈增大趋势,但桩基下部负弯矩区受基础冲刷深度影响更敏感。 展开更多
关键词 高速铁路 铁路桥梁 简支梁桥 洪水作用 动力响应 基础冲刷
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考虑场地液化的简支桥梁振动台试验研究
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作者 徐丹 王飞 +2 位作者 郭杨 徐开元 乐腾胜 《地震工程与工程振动》 CSCD 北大核心 2024年第3期108-115,共8页
为了探究简支桥梁在可液化场地条件下的倒塌机理,结合实际震害调查,并对量大面广的简支桥梁进行了模拟液化场地下的振动台模型试验,采用持续增强的白噪声和正弦波作为激励,研究了简支桥梁在可液化场地条件下的倒塌机理。结果表明,振动... 为了探究简支桥梁在可液化场地条件下的倒塌机理,结合实际震害调查,并对量大面广的简支桥梁进行了模拟液化场地下的振动台模型试验,采用持续增强的白噪声和正弦波作为激励,研究了简支桥梁在可液化场地条件下的倒塌机理。结果表明,振动台试验结果能够很好地再现液化现象,桩截面峰值应变位置随着液化的逐渐加深而下移,桩基自振频率随场地液化的逐渐加深而持续降低,而邻桩间距的不断增大会导致桥梁倒塌,试验结果与实际震害现象较为接近。研究对桥梁结构在地震作用下的土-结构相互作用具有一定的参考价值,也为现存类似桥梁的地震安全性评价积累了部分试验资料。 展开更多
关键词 震害调查 简支桥梁 液化 倒塌 振动台试验
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孟加拉38 m简支梁桥墩纵向水平刚度限值研究
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作者 徐浩 杨文茂 林红松 《铁道工程学报》 EI CSCD 北大核心 2024年第4期48-53,共6页
研究目的:孟加拉帕德玛大桥铁路连接线为“一带一路”重点工程项目之一,在高架桥上铺设跨区间无砟轨道无缝线路,且高架桥主要采用38 m混凝土简支箱梁。为指导孟加拉38 m混凝土简支箱梁桥上无缝线路及桥墩设计,建立轨道-桥梁-墩台一体化... 研究目的:孟加拉帕德玛大桥铁路连接线为“一带一路”重点工程项目之一,在高架桥上铺设跨区间无砟轨道无缝线路,且高架桥主要采用38 m混凝土简支箱梁。为指导孟加拉38 m混凝土简支箱梁桥上无缝线路及桥墩设计,建立轨道-桥梁-墩台一体化仿真分析模型,研究桥墩纵向水平刚度对无缝线路力学性能的影响规律,基于钢轨强度、梁轨相对位移和钢轨断缝限值,提出满足38 m混凝土简支箱梁桥上无缝线路铺设的桥墩纵向水平刚度限值。研究结论:(1)钢轨伸缩力和挠曲力随桥墩纵向水平刚度的增大而增大,钢轨制动力、梁轨相对位移和钢轨断缝值均随桥墩纵向水平刚度的增大而减小;(2)采用UIC规范参数时,桥墩纵向水平刚度限值受梁轨相对位移控制;(3)采用中国规范参数时,桥墩纵向水平刚度限值受钢轨强度、梁轨相对位移、钢轨温度变化幅度和机车牵引类型共同控制;(4)采用UIC规范时的桥墩纵向水平刚度限值小于中国规范的规定值,综合考虑钢轨强度、梁轨相对位移、机车牵引类型的影响,钢轨温度变化幅度分别为50℃、40℃和30℃,采用UIC规范时,建议38 m混凝土简支箱梁的桥墩纵向水平刚度限值取200 kN/cm;采用中国规范时,建议38 m混凝土简支箱梁的桥墩纵向水平刚度限值取550、250和250 kN/cm;(5)本研究成果可为相关客货共线铁路混凝土简支箱梁桥上无缝线路及桥墩设计提供参考和借鉴。 展开更多
关键词 客货共线 无缝线路 简支梁 桥墩纵向水平刚度
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基于加速度模态曲率的桥梁结构损伤评估方法
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作者 陈红墺 曹忠辉 +4 位作者 杜文康 何锦涛 雷冬 朱飞鹏 白鹏翔 《河南科学》 2024年第10期1467-1476,共10页
基于加速度振动信号和弹性薄板理论,提出了一种利用加速度模态曲率定位桥梁结构损伤的方法,并根据模态曲率面积方差比提出用于量化桥梁结构损伤的损伤指数.结果表明,通过简支梁固有频率和一阶加速度模态振型的长期变化趋势能够识别结构... 基于加速度振动信号和弹性薄板理论,提出了一种利用加速度模态曲率定位桥梁结构损伤的方法,并根据模态曲率面积方差比提出用于量化桥梁结构损伤的损伤指数.结果表明,通过简支梁固有频率和一阶加速度模态振型的长期变化趋势能够识别结构损伤;在没有无损工况作为参考时,通过简支梁沿主梁方向的总应变和一阶加速度模态曲率能够准确定位到简支梁的损伤位置,二者的损伤定位结果互相印证,但一阶加速度模态曲率对低程度损伤的敏感性比应变更高;损伤位置处的一阶加速度模态曲率突变会随着结构损伤程度的增加变得越来越明显;拟合出损伤指数与刚度损伤程度的关系曲线,利用两者之间的关系曲线可以对简支梁损伤程度进行量化,且经过验证发现该方法的计算精度较高. 展开更多
关键词 桥梁工程 简支梁 主梁应变 加速度模态曲率 损伤评估
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小半径曲线简支梁桥上有轨电车嵌入式轨道无缝线路研究
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作者 孙魁 农兴中 +3 位作者 肖军华 冯青松 翟利华 罗信伟 《铁道标准设计》 北大核心 2024年第9期68-74,共7页
为研究小半径曲线简支梁桥上有轨电车嵌入式轨道无缝线路的力学特性,根据梁轨纵向和横向相互作用原理,采用有限元法建立三维曲线简支梁桥上嵌入式轨道无缝线路模型,详细分析了钢轨温度、曲线半径、高分子材料纵向阻力和横向刚度对钢轨... 为研究小半径曲线简支梁桥上有轨电车嵌入式轨道无缝线路的力学特性,根据梁轨纵向和横向相互作用原理,采用有限元法建立三维曲线简支梁桥上嵌入式轨道无缝线路模型,详细分析了钢轨温度、曲线半径、高分子材料纵向阻力和横向刚度对钢轨和桥梁纵、横向受力和变形的影响规律。结果表明:(1)钢轨温度的增加会显著加剧伸缩工况中梁轨横向相互作用,故在进行小半径曲线桥上无缝线路设计时,需要考虑钢轨温度对桥墩横向受力的影响;(2)随着曲线半径的增加,钢轨伸缩力和梁轨纵向相对位移逐渐增加,梁轨横向相对位移和桥梁墩台横向受力则呈现整体减小的变化趋势;(3)当曲线半径大于300 m时,梁轨纵、横向相互作用与直线模型的计算结果逐渐趋于一致;(4)降低高分子材料纵向阻力可以显著减小桥梁墩台纵向和横向受力,对无缝线路力学特性而言,高分子材料横向刚度不是一个十分敏感的参数;(5)曲线半径对伸缩工况和断轨工况的影响较为显著,而对挠曲工况和制动工况的影响相对较小;(6)采用直线模型的计算结果进行钢轨强度和断缝值检算是偏安全的,但在检算小半径曲线地段桥梁墩台横向受力时需要采用曲线模型。 展开更多
关键词 无缝线路 有轨电车 嵌入式轨道 简支梁 小半径曲线 高分子材料
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基于有限元分析的简支梁桥桥面防水粘结层力学响应研究 被引量:1
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作者 王国军 王亚博 +2 位作者 王飞 邹远棋 易军艳 《市政技术》 2024年第1期49-54,共6页
防水粘结层被破坏是导致简支梁桥桥面铺装出现病害的主要原因。通过数值模拟对不同简支梁桥桥型进行防水粘结层力学响应分析,明确防水粘结层在不同桥型结构中的受力状态,总结沥青铺装层模量和厚度对防水粘结层力学响应指标的影响。研究... 防水粘结层被破坏是导致简支梁桥桥面铺装出现病害的主要原因。通过数值模拟对不同简支梁桥桥型进行防水粘结层力学响应分析,明确防水粘结层在不同桥型结构中的受力状态,总结沥青铺装层模量和厚度对防水粘结层力学响应指标的影响。研究结果表明,简支梁桥桥型对防水粘结层力学响应的影响不大;增加沥青铺装层模量对控制防水粘结层最大拉应力和沥青铺装层变形能起到较好的作用;增加沥青铺装层厚度能有效控制防水粘结层法向拉应力和分散车轮荷载。研究结果能够为桥面铺装的结构设计提供理论基础,提高简支梁桥的服役寿命。 展开更多
关键词 简支梁桥 桥型 防水粘结层 数值模拟 力学响应
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