首页|大跨度铁路桥梁端位移精细化计算研究

大跨度铁路桥梁端位移精细化计算研究

扫码查看
为针对大跨度铁路桥选择合适的梁端伸缩装置,保障列车行车的安全性,提高桥梁的使用性能,依据多座大跨度桥梁端位移实测值演化规律以及结构计算,开展温度荷载、列车荷载、风荷载及风与温度荷载组合引起的梁端位移精细化计算研究.提出温度荷载的取值类型和取值范围;明确列车荷载引起梁端位移的计算工况和计算方法;确定桁式主梁风荷载摩擦系数取值和所引起梁端位移的计算工况;结合风荷载、风与温度荷载联合分布模型,提出风与温度荷载组合时风荷载的折减系数.以某斜拉桥为背景,对比本文方法和常规方法计算梁端位移的结果.结果表明:温度荷载引起梁端位移可仅考虑体系温度,体系降温工况各结构的温度按大气温度取值;体系升温工况索结构和一半主梁结构考虑热辐射效应,桥塔结构和另一半主梁结构按大气温度取值;应考虑阻尼器、支座等边界阻力效应,采用动力时程法计算列车荷载引起的梁端位移,计算值与实测值吻合良好;对于采用桁式主梁的桥梁,分别按风偏角45°、90°计算风荷载引起的梁端位移,取两者最不利值;计算风与温度荷载组合下梁端位移时,风荷载引起的梁端位移可相应折减;常规方法所得的梁端位移较为保守,梁端位移的精细化计算更有利于选择合适的梁端伸缩装置.
Research on Refined Girder-End Displacement Calculation for Long-Span Railway Bridge
Girder-end expansion devices are critical to the running safety of trains on the long-span railway bridges as well as the service performance of the bridges.In this paper,refined calculations were conducted to investigate the girder-end displacements induced by thermal loads,train loads,wind loads,and combined wind and thermal loads,on the basis of the data of measured girder-end displacements and structural calculations of multiple long-span bridges.The types and ranges of thermal loads are suggested.The loading cases and methods to calculate the girder-end displacements induced by train loads are determined.The values of friction coefficients of wind loads for trusses as well as the loading cases selected to calculate the girder-end displacements induced by wind loads are provided.The wind load reduction factors related to the combination of wind and thermal loads are calculated in the wind load model and the unified distribution model of wind and thermal loads.The proposed method has been applied to calculate the girder-end displacements of a cable-stayed bridge,and compared with the calculation efficiency of the conventional methods.It is concluded that the girder-end displacement induced by thermal loads is highly associated with the system temperature,during the fall of the system temperature,the temperatures of structures draw the values of atmospheric temperatures,while during the rise of the system temperature,heat radiation effect should be considered for the stay cables and half of the superstructure,and the temperatures of the pylons and the other half of the superstructure draw the values of atmospheric temperatures.The boundary resistance effects of the dampers and bearings should be considered,the dynamic time history method was used to calculate the girder-end displacements induced by train loads,the calculated results agreed well with the measured values.For the truss bridge,the girder-end displacements induced by wind loads calculated at wind yaw angles of 45° and 90°,and the most unfavorable values were selected.When calculating the girder-end displacement combinations under the action of wind and thermal loads,the displacements induced by wind loads should be discounted.The girder-end displacements calculated by the conventional methods were conservative,it is a better option to select the girder-end displacements via refined calculation.

long-span railway bridgegirder-end displacementstructural calculationthermal loadtrain loadwind loadgirder-end expansion devicefinite element method

苑仁安、肖海珠、汪珍

展开 >

中铁大桥勘测设计院集团有限公司,湖北武汉 430056

桥梁智能与绿色建造全国重点实验室,湖北 武汉 430034

大跨度铁路桥 梁端位移 结构计算 温度荷载 列车荷载 风荷载 梁端伸缩装置 有限元法

2024

桥梁建设
中铁大桥局集团有限公司

桥梁建设

CSTPCD北大核心
影响因子:1.428
ISSN:1003-4722
年,卷(期):2024.54(6)