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桥梁车辆振动问题及刚架拱桥动力特性分析 被引量:3
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作者 刘织 林耀雄 《工程力学》 EI CSCD 北大核心 2001年第A01期955-959,共5页
本文简要介绍了桥梁车辆振动问题的研究概况以及车-桥系统相互作用的特点 和影响因素,并以津淮桥为例,对刚架拱桥的动力特性进行了初步分析,为进一步研究此类拱桥的车振规律提供实验数据和理论参考。
关键词 桥梁车振 刚架拱桥 动力特性
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Improved Twin I-Girder Curved Bridge-Vehicle Interaction Analysis and Human Sensitivity to Vibration
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作者 Md. Robiul Awall Toshiro Hayashikawa Tasnuva Humyra 《Journal of Civil Engineering and Architecture》 2016年第2期192-202,共11页
The perceptible vibration of curved twin I-girder bridges under traffic loads is an important design consideration, because this bridge have rather low torsional stiffness that produce excessive vibrations. The object... The perceptible vibration of curved twin I-girder bridges under traffic loads is an important design consideration, because this bridge have rather low torsional stiffness that produce excessive vibrations. The objective of this investigation was to study the vibration of curved twin I-girder bridges due to moving vehicles and the effect of vibrations on bridge users. To this end, a comprehensive three-dimensional finite element models for bridge and vehicle are developed by using ANSYS code for studying bridge-vehicle interaction and the resultant sensitivity to vibration. Truck parameters include the body, the suspension and the tires. Gap and actuator elements are incorporated into the tire models to simulate the separation between the tires and road surface, and road surface roughness, respectively. Road roughness profiles are generated from power spectral density and cross spectral functions. To couple the motion of the bridge and vehicle, Lagrange multipliers and constraint equations are utilized through the augmented Lagrangian method. A parametric study is performed to identify the effect of various parameters on the vibration of the bridge. The results have been expressed in the form of human perceptibility curves. This study finds that the bridge response is significantly influenced by the road roughness, bump height at expansion joint and vehicle speeds. The results show that the inclusion of features such as increasing the torsional stiffness by providing additional stiffened bracing has major effects on the reduction of perceptible vibration. 展开更多
关键词 Perceptible vibration bridge-vehicle interaction torsional stiffness finite element model ROUGHNESS bottom bracings.
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