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类矩形双肢钝体涡致振动和气动抑振机理
引用本文:陆方夏,赵林,郭增伟,葛耀君. 类矩形双肢钝体涡致振动和气动抑振机理[J]. 石家庄铁道学院学报(社会科学版), 2010, 0(4): 10-14,94
作者姓名:陆方夏  赵林  郭增伟  葛耀君
作者单位:同济大学 土木工程防灾国家重点实验室;同济大学 土木工程防灾国家重点实验室;同济大学 土木工程防灾国家重点实验室;同济大学 土木工程防灾国家重点实验室
基金项目::[HT5”SS]国家科技支撑计划项目(90715039、50978203);科技部国家重点实验室基础研究项目(SLDRCE08 C 02)
摘    要:针对具有类矩形双肢钝体断面拱肋的大跨度拱桥在风洞试验过程易出现大幅涡激振动问题,沿拱肋模型表面进行动态风压同步测量及基于POD算法的本征气动力荷载分布模式分解,获得了涡振发生时对于周期性涡激力具有最大贡献的气动力荷载作用位置,初步揭示出此类断面涡激动发生时的局部气动力荷载作用机制。以上海卢浦大桥和肇庆西江特大桥此类具有双肢钝体断面拱桥为工程实例,结合涡激气动力沿拱肋周向时空气分布特征,提出并以二维悬吊节段模型风洞试验验证了拱肋断面多种有针对性的气动控制措施;结合实际桥梁拱肋的三维空间效应,利用全桥气弹模型

关 键 词:类矩形双肢钝体  大跨度拱桥  钢箱拱肋  涡激振动  气动抑振措施
收稿时间:2010-09-15

Vortex Shedding induced Vibration and its Mitigation of Two rib Bluff Body with Rectangular Shape
Lu Fangxi,Zhao Lin,Guo Zengwei and Ge Yaojun. Vortex Shedding induced Vibration and its Mitigation of Two rib Bluff Body with Rectangular Shape[J]. , 2010, 0(4): 10-14,94
Authors:Lu Fangxi  Zhao Lin  Guo Zengwei  Ge Yaojun
Affiliation:State Key Laboratory for Disaster Reduction in Civil Engineering;State Key Laboratory for Disaster Reduction in Civil Engineering;State Key Laboratory for Disaster Reduction in Civil Engineering;State Key Laboratory for Disaster Reduction in Civil Engineering
Abstract:In wind tunnel test, arch ribs with two rib rectangular shape of long span arch bridges are prone to large vortex induced vibration (VIV). Based on analyzing the distribution of the arch rib surface aerodynamic pressure, the relationship between the pressures distribution and the periodic vortex induced force is gained by POD method and the mechanism of the local vortex excited aerodynamic loading is initially revealed. Taking Lupu arch bridge and Zhaoqing Xijiang grand arch bridge as technical examples, with the help of aerodynamic characteristics of pressures distribution around rib surface, especially the dominant vortex excited areas determined by surface pressure measurement tests about two dimensional sectional model, this paper proposed control measures for the rib section significantly reducing amplitude of vortex induced vibration, and mitigation effects were successfully re illustrated. Finally, the vortex related aerodynamic vibration characteristics, damping effect, the three dimensional gradient effect and the effect of the combined effects of mass distribution were further investigated utilizing full aero elastic bridge model. Some conclusions are reached that the solution of suspension plate just at the place of upper and lower arch lib or fully covering plate can both sharply reduce amplitude of vortex induced vibration and increase onset wind speed of lock in region; VIV suppression effects should be re examined combined with three dimensional full aero elastic model.
Keywords:two rib rectangular shape bluff body   long span arch bridge   steel box arch lib   vortex excite resonance   vibration control
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