

浏览全部资源
扫码关注微信
1.华东交通大学土木建筑学院,江西 南昌 330013
2.华东交通大学轨道交通基础设施性能监测与保障国家重点实验室,江西 南昌 330013
3.中南大学高速铁路建造技术国家工程研究中心,湖南 长沙 410075
Received:31 December 2022,
Revised:2023-04-10,
Published:25 June 2024
移动端阅览
冯玉林,何帅,蒋丽忠等.边墩沉降致连续简支桥段纵连线桥系统层间联结劣化规律[J].防灾减灾工程学报,2024,44(03):623-631.
FENG Yulin,HE Shuai,JIANG Lizhong,et al.Deterioration Patterns of Interlayer Connections in Longitudinally Connected Line Bridge Systems on Continuous Simply Supported Beam Bridge Sections Induced by Side Pier Settlement[J].Journal of Disaster Prevention and Mitigation Engineering,2024,44(03):623-631.
冯玉林,何帅,蒋丽忠等.边墩沉降致连续简支桥段纵连线桥系统层间联结劣化规律[J].防灾减灾工程学报,2024,44(03):623-631. DOI: 10.13409/j.cnki.jdpme.20221231001.
FENG Yulin,HE Shuai,JIANG Lizhong,et al.Deterioration Patterns of Interlayer Connections in Longitudinally Connected Line Bridge Systems on Continuous Simply Supported Beam Bridge Sections Induced by Side Pier Settlement[J].Journal of Disaster Prevention and Mitigation Engineering,2024,44(03):623-631. DOI: 10.13409/j.cnki.jdpme.20221231001.
为研究边墩沉降致纵连板式无砟轨道⁃连续梁桥系统(纵连线桥系统)层间联结劣化状态,在考虑边墩沉降与层间接触不连续影响的基础上,建立纵连线桥系统非线性空间模型,采用前期提出的理论模型对其进行验证,据此分析边墩沉降下纵连线桥系统典型变形模式,层间联结失效的演化过程、发展规律及出现位置等。结果表明:建立的空间模型准确可靠;边墩沉降下,线桥系统会产生跟随变形、自重变形和悬停分离三种变形模式;沉降墩、与沉降墩临近的简支梁墩及连续梁桥另一侧边墩上方会出现层间联结失效,与沉降墩临近的简支梁墩、连续梁桥全部桥墩上的支座均会发生破坏;边墩沉降处板底脱空高度可用边墩沉降值减去连续梁桥变形限值进行描述;各脱空区长度均随边墩沉降幅值增加而增大,与沉降墩临近的简支梁墩左、右两侧区域脱空长度成正对称分布,连续梁另一边墩处脱空长度值只与连续梁变形有关,始终维持在2.56 m。
This study delves into the degradation of interlayer connections within longitudinally connected slab ballastless track-continuous beam line bridge systems (LCLBS) caused by side pier settlement. Incorporating the effects of side pier settlement and discontinuous contact between layers
a nonlinear spatial model of LCLBS was developed and validated against a previously established theoretical model. Subsequently
the typical deformation modes of the LCLBS under side pier settlement
along with the evolution process
development trends
and locations of interlayer connection failure were thoroughly analyzed. The findings underscore the accuracy and reliability of the spatial model. Under side pier settlement
LCLBS manifested three distinct deformation modes: follow deformation
self-weight deformation
and hovering separation. Interlayer connection failure occurred above the settlement pier
the simply supported beam piers adjacent to the settlement pier
and the opposite side pier of the continuous beam bridge. Bearings on the simply supported beam piers adjacent to the settlement pier and on all piers of the continuous beam bridge were damaged. The clearance height at the slab bottom near the settlement pier was quantifiable by subtracting the deformation limit of the continuous beam bridge from the settlement value of the side pier. Furthermore
the length of each clearance zone expanded with the amplitude of the side pier settlement
exhibiting symmetrically distributed clearance lengths on both sides of the simply supported beam piers adjoining the settlement pier. Conversely
the clearance length at the pier on the opposite side of the continuous beam was solely dictated by the continuous beam's deformation
consistently maintained at 2.56 meters.
吴楠 , 肖军华 , 陈建国 , 等 . 高速铁路无砟轨道桥梁基础变形对行车的影响 [J]. 铁道工程学报 , 2017 , 34 ( 9 ): 58 - 63 .
Wu N , Xiao J H , Chen J G , et al . Effect of bridge pier deformation for high speed railway with ballastless track on train running safety and comfort [J]. Journal of Railway Engineering Society , 2017 , 34 ( 9 ): 58 - 63 . (in Chinese)
李岩 , 赵春发 , 朱胜阳 . 温度荷载和车辆载荷作用下CRTS Ⅲ无砟轨道板损伤分析 [J]. 武汉理工大学学报(交通科学与工程版) , 2018 , 42 ( 6 ): 956 - 961 .
Li Y , Zhao C F , Zhu S Y . Damage analysis of the CRTS III ballastless track slab under temperature load and vehicle load [J]. Journal of Wuhan University of Technology(Transportation Science &. Engineering) , 2018 , 42 ( 6 ): 956 - 961 . (in Chinese)
郭宇 , 高建敏 , 孙宇 , 等 . 板式无砟轨道轨面变形与路基沉降的映射关系 [J]. 西南交通大学学报 , 2017 , 52 ( 6 ): 1139 - 1147 .
Guo Y , Gao J M , Sun Y , et al . Mapping relationship between rail deflection of slab track and subgrade settlement [J]. Journal of Southwest Jiaotong University , 2017 , 52 ( 6 ): 1139 - 1147 . (in Chinese)
张乾 , 蔡小培 , 钟阳龙 , 等 . 路基沉降区双块式无砟轨道损伤行为与轨面不平顺分析 [J]. 中南大学学报(自然科学版) , 2022 , 53 ( 7 ): 2573 - 2581 .
Zhang Q , Cai X P , Zhong Y L , et al . Analysis of damage and rail irregularity of double-block ballastless track in subgrade settlement area [J]. Journal of Central South University (Science and Technology) , 2022 , 53 ( 7 ): 2573 - 2581 . (in Chinese)
肖威 , 郭宇 , 高建敏 , 等 . 高速铁路路基不均匀沉降对CRTS Ⅲ板式轨道受力变形的影响 [J]. 铁道科学与工程学报 , 2015 , 12 ( 4 ): 724 - 730 .
Xiao W , Guo Y , Gao J M , et al . Effect of uneven subgrade settlement on the CRTS III slab track stress and deformation of high-speed railway [J]. Journal of Railway Science and Engineering , 2015 , 12 ( 4 ): 724 - 730 . (in Chinese)
崔旭浩 , 杨怀志 , 杜博文 , 等 . 路基不均匀沉降对CRTSⅡ型板式无砟轨道损伤和变形影响分析 [J]. 铁道学报 , 2021 , 43 ( 10 ): 91 - 97 .
Cui X H , Yang H Z , Du B W , et al . Analysis of effects of differential subgrade settlement on damage and deformation of CRTS Ⅱ slab track [J]. Journal of the China Railway Society , 2021 , 43 ( 10 ): 91 - 97 . (in Chinese)
陈天浩 , 杨建伟 , 王金海 , 等 . 多桥墩沉降下轨道底座板与桥面板间脱空区域的研究分析 [J]. 北京建筑大学学报 , 2021 , 37 ( 2 ): 54 - 62 .
Chen T H , Yang J W , Wang J H , et al . Research and analysis of the void area between base plate and bridge plate under the settlement of multiple pier [J]. Journal of Beijing University of Civil Engineering and Architecture , 2021 , 37 ( 2 ): 54 - 62 . (in Chinese)
冯玉林 , 蒋丽忠 , 陈梦成 , 等 . 连续梁桥边墩不均匀沉降下轨道层间变形协调关系及动力学应用 [J]. 工程力学 , 2021 , 38 ( 4 ): 179 - 190 .
Feng Y L , Jiang L Z , Chen M C , et al . Deformation compatibility relationship of track interlayer with uneven settlement of side pier of continuous girder bridge and its dynamic application [J]. Engineering Mechanics , 2021 , 38 ( 4 ): 179 - 190 . (in Chinese)
Feng Y L , Li H Y , Yu J , et al . Applicability of existing CRTS II ballastless track- continuous girder bridge system under near-field transverse rare earthquake [J]. Engineering Structures , 2022 . 273 : 115076 .
Feng Y L , Hou Y , Jiang L Z , et al . Failure mode of interlayer connection of longitudinally-connected ballastless track-bridge system under uneven pier settlement [J]. Construction and Building Materials , 2022 , 351 : 128805 .
Feng Y L , Jiang L Z , Zhou W B , et al . An analytical solution to the mapping relationship between bridge structures vertical deformation and rail deformation of high-speed railway [J]. Steel and Composite Structures , 2019 , 33 ( 2 ): 209 - 224 .
冯玉林 , 蒋丽忠 , 陈梦成 , 等 . 地震作用下轨道-桥梁系统损伤与轨道不平顺的对应关系 [J]. 交通运输工程学报 , 2021 , 21 ( 3 ): 203 - 214 .
Feng Y L , Jiang L Z , Chen M C , et al . Corresponding relationship between track-bridge system damage and track irregularity under seismic action [J]. Journal of Traffic and Transportation Engineering , 2021 , 21 ( 3 ): 203 - 214 . (in Chinese)
Feng Y , He S , Jiang L , et al . Uneven settlement threshold of continuous beam pier based on analytic mapping relationship [J]. Structure and Infrastructure Engineering , 2023 , 19 ( 9 ): 1190 - 1204 .
Chen Z W , Bi L , Zhao J W . Comparison of single-pier settlement model and multi-pier settlement model in solving train-track-bridge interaction [J]. Vehicle System Dynamics , 2021 , 59 ( 10 ): 1484 - 1508 .
勾红叶 , 冉智文 , 蒲黔辉 , 等 . 高速铁路桥梁竖向变形与轨面几何形态的通用映射解析模型研究 [J]. 工程力学 , 2019 , 36 ( 6 ): 227 - 238 .
Gou H Y , Ran Z W , Pu Q H , et al . Study on mapping relationship between bridge vertical deformation and track geometry of high-speed railway [J]. Engineering Mechanics , 2019 , 36 ( 6 ): 227 - 238 . (in Chinese)
Jiang L Z , Zheng L , Feng Y L , et al . Mapping the relationship between the structural deformation of a simply supported beam bridge and rail deformation in high-speed railways [J]. Proceedings of The Institution of Mechanical Engineers Part F-Journal of Rail and Rapid Transit , 2020 , 234 ( 10 ): 1081 - 1092 .
Jiang L Z , Liu L L , Zhou W B , et al . Mapped relationships between pier settlement and rail deformation of bridges with CRTS III SBT [J]. Steel and Composite Structures , 2020 , 36 ( 4 ): 481 - 492 .
Lai Z P , Jiang L Z , Liu X , et al . Analytical investigation on the geometry of longitudinal continuous track in high-speed rail corresponding to lateral bridge deformation [J]. Construction and Building Materials , 2021 , 268 : 121064 .
娄平 , 黄港归 . 路桥过渡段折角型沉降致CRTS Ⅲ型无砟轨道效应研究 [J]. 铁道科学与工程学报 , 2023 , 20 ( 4 ): 1292 - 1303 .
Lou P , Huang G G . Study on the effect of CRTS Ⅲ ballastless track caused by angular settlement in transition section between bridge and subgrade [J]. Journal of Railway Science and Engineering , 2023 , 20 ( 4 ): 1292 - 1303 . (in Chinese)
陈兆玮 . 桥墩沉降下纵连板式轨道与桥面间动态接触行为及其对列车动态特性的影响 [J]. 土木工程学报 , 2021 , 54 ( 1 ): 97 - 105 .
Chen Z W . Dynamic contact behavior between longitudinally-connected-track and bridge deck subject to pier settlement and its influence on running train [J]. China Civil Engineering Journal , 2021 , 54 ( 1 ): 97 - 105 . (in Chinese)
龙昊 . 高速铁路桥梁附加变形对轨道不平顺的映射影响机理研究 [D]. 成都 : 西南交通大学 , 2019 .
Long H . Mechanism of mapping relationship between additional bridge deformation and track irregularity of high-speed railway [D]. Chengdu : Southwest Jiaotong University , 2019 . (in Chinese)
冯玉林 , 侯宇 , 蒋丽忠 , 等 . 基础变形诱发无砟轨道-桥梁系统关键构件变形累积与刚度突变的轨面解析表征 [J]. 土木工程学报 , 2023 , 56 ( 3 ): 44 - 57 .
Feng Y L , Hou Y , Jiang L Z , et al . Rail surface analytical representation of deformation accumulation and stiffness mutation of key components in ballastless track-bridge system induced by foundation deformation [J]. China Civil Engineering Journal , 2023 , 56 ( 3 ): 44 - 57 . (in Chinese)
国家铁路局 . 高速铁路设计规范 [M]. 北京 : 中国铁道出版社有限公司 , 2019 .
National Railway Administration of People's Republic of China . Code for design of high speed railway [M]. Beijing : China Railway Publishing House Co., Ltd . 2019 . (in Chinese)
国巍 , 王阳 , 葛苍瑜 , 等 . 近断层地震动下高速铁路多跨简支梁桥震致破坏特征 [J]. 振动与冲击 , 2020 , 39 ( 17 ): 210 - 218 .
Guo W , Wang Y , Ge C Y , et al . Seismic failure features of multi-span simply supported girder bridges of high-speed railway under near-fault earthquake [J]. Journal of Vibration and Shock , 2020 , 39 ( 17 ): 210 - 218 . (in Chinese)
0
Views
0
下载量
1
CSCD
Publicity Resources
Related Articles
Related Author
Related Institution
苏公网安备32010202012147号