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L型导流板对钢箱梁涡振的影响及机理OA

Influence of L-shaped flow deflectors on vortex-induced vibration of steel box girders and underlying mechanisms

中文摘要英文摘要

为研究L型导流板对钢箱梁涡振特性的影响,设计了20种试验工况,并开展+5°风攻角下的节段模型测振风洞试验,分析了水平板宽度与竖板高度在不同几何参数条件下的涡振响应规律.同时,基于CFD的方法进行数值模拟,结合Ω识别法提取涡结构,揭示其对涡振演化机制的影响.结果表明,水平板越宽,对竖弯涡振的抑制效果越显著,涡振区间向高风速区平移;竖板高度对扭转涡振影响显著,其高度增加易诱发高风速区的扭转涡振;水平板加宽减小了带状涡宽度,从而优化流场,竖板增高催生并扩大了涡团,使流场趋于复杂;当附属构件的涡与主梁周边涡的结构量级相当时,才能发挥抑制振动作用.

To study the influence of L-shaped flow deflectors on the vortex-induced vibration(VIV)characteristics of steel box girders,a series of 20 test cases was designed.A sectional model wind tunnel test was carried out under a+5° wind attack angle to analyze the VIV response patterns associated with variations in horizontal plate width and vertical plate height.In parallel,computational fluid dynamics(CFD)simulations were performed,and the vortex structures were extracted using the Ω vortex identification method to reveal the underlying VIV evolution mechanism.The results show that increasing the horizontal plate width significantly enhances the suppression of vertical bending VIV,while shifting the VIV lock-in region toward higher wind speeds.In contrast,the vertical plate height strongly influences torsional VIV;larger heights tend to induce torsional vibration in the high wind speed regime.Flow field analysis shows that widening the horizontal plate reduces the spanwise extent of vortex structures,thereby improving flow uniformity.Conversely,increasing the vertical plate height promotes the formation and development of vortex clusters,leading to a more complex flow field.Effective vibration mitigation is achieved only when the vortices generated by the attached components are of a comparable scale to those shed from the main girder,enabling interference with the dominant vortex-shedding process.

李加武;曹晟阁;罗爽;杨鑫

长安大学 公路学院,西安 710064长安大学 公路学院,西安 710064成都清正公路工程试验检测有限公司,成都 610041中交路桥建设有限公司,北京 100000

交通工程

导流板涡激振动风洞试验钢箱梁CFD

flow deflectorvortex-induced vibrationwind tunnel teststeel box girderCFD

《重庆大学学报》 2026 (5)

94-106,13

国家自然科学基金资助项目(51978077).Supported by National Natural Science Foundation of China(51978077).

10.11835/j.issn.1000-582X.2025.039

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