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公路连续梁桥在横向多车作用下的振动响应研究 被引量:6

Studies on vibration response of the continuous girder highway bridge under horizontal multi-vehicle loads
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摘要 为研究横向多车作用下连续梁桥的振动响应,通过ANSYS建立公路连续箱梁桥的三维实体有限元模型,采用三维整车模型模拟三轴自卸汽车,引入路面不平顺的激励作用,建立多车车桥耦合振动方程.采用自编Matlab程序对横向并排两车、纵向前后两车及单车工况下桥梁的振动响应进行对比研究.结果表明:横向两车工况下的冲击系数与单车工况下的冲击系数接近,且为单车工况结果的0.4~1.3倍;纵向两车工况下的冲击系数绕单车工况下的冲击系数上下波动,且为单车工况结果的0.037~43.887倍.多车工况下的桥梁振动响应与车速、桥跨、车辆间距、路面等级等多种因素有关. In order to study the vibration response of continuous girder bridges under horizontal multivehicle loads,ANSYS was used to build the three-dimensional solid finite element model of continuous girder highway bridge,simulated three-axle dump truck by three-dimensional models,and considered the impact of road roughness to establish the multiple vehicle-bridge coupled vibration equation.The vibration response of bridges under the horizontal two-vehicle,longitudinal two-vehicle and single-vehicle conditions by running MATLAB program were studied.The result showed that the impact coefficients of the bridge under horizontal two-vehicle condition were close to that of singlevehicle condition,which were 0.4 to 1.3 times of the impact coefficients under the condition of singlevehicle;and the impact coefficients of the bridge under longitudinal two-vehicle condition fluctuate around that under single-vehicle condition,which were 0.037 to 43.887 times of the impact coefficients under the condition of single-vehicle.The vibration response of the bridge under multi-row vehicle loads was related to various factors such as vehicle velocity,bridge span,vehicle spacing,and the quality level of the bridge surface.
作者 陈水生 宋元 桂水荣 罗浩 CHEN Shuisheng;SONG Yuan;GUI Shuirong;LUO Hao(School of Civil Engineering and Architecture,East China Jiaotong University,Nanchang,Jiangxi 330013,China)
出处 《福州大学学报(自然科学版)》 CAS 北大核心 2020年第4期497-504,共8页 Journal of Fuzhou University(Natural Science Edition)
基金 国家自然科学基金资助项目(51468018) 江西省自然科学基金资助项目(20181BAB206043,20181BAB206041)。
关键词 桥梁工程 车桥耦合振动响应 Newmak-β算法 多排车辆荷载 振型分解法 bridge engineering vehicle-bridge vibration calculation method of Newmak-β multirow vehicle loads modal analysis method
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