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风屏障对钢箱桁主梁涡激振动性能及高速列车气动力影响研究
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作者 孙延国 韩金 +1 位作者 马存明 李沁峰 《振动与冲击》 北大核心 2025年第17期254-261,共8页
钢箱桁组合梁是近年来出现的新型主梁形式,有整体刚度高,跨中挠度小等优点,逐步应用于大跨度高铁桥梁。但由于桁架杆件和箱梁之间的气动干扰,使其气动性能难以评估。同时为了使列车获得较好行驶稳定性,通常需要安装风屏障,这使得车桥系... 钢箱桁组合梁是近年来出现的新型主梁形式,有整体刚度高,跨中挠度小等优点,逐步应用于大跨度高铁桥梁。但由于桁架杆件和箱梁之间的气动干扰,使其气动性能难以评估。同时为了使列车获得较好行驶稳定性,通常需要安装风屏障,这使得车桥系统间的干扰变得更加复杂。为了明确钢箱桁的气动性能并研究风屏障对钢箱桁铁路桥(vortex induced vibration,VIV)涡激振动及列车风载荷的综合影响,以某大跨度钢箱桁斜拉桥为工程背景,通过1∶47节段模型风洞试验,分别研究了风屏障对车桥系统中列车的气动力系数及主梁的VIV性能的影响。结果表明:钢箱桁主梁具有较好的VIV性能,无风屏障时主梁未发生VIV现象,安装风屏障会对钢箱桁的VIV性能产生不利影响;风屏障会对列车的气动力特性产生明显影响,在透风率固定时随着风屏障高度的增加列车的倾覆力矩系数逐渐减小,增加透风率会使倾覆力矩增加;在主梁斜腹板或底板上设置竖向稳定板能够降低因安装风屏障引起的VIV响应,随着风屏障透风率增大主梁VIV振幅会进一步减小。 展开更多
关键词 风屏障 涡激振动(VIV) 钢箱桁桥 列车气动系数 抑振措施
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Crosswind stability of high-speed trains in special cuts 被引量:3
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作者 张洁 高广军 +1 位作者 刘堂红 李志伟 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2849-2856,共8页
Analysis of the aerodynamic performance of high-speed trains in special cuts would provide references for the critical overturning velocity and complement the operation safety management under strong winds.This work w... Analysis of the aerodynamic performance of high-speed trains in special cuts would provide references for the critical overturning velocity and complement the operation safety management under strong winds.This work was conducted to investigate the flow structure around trains under different cut depths,slope angles using computational fluid dynamics(CFD).The high-speed train was considered with bogies and inter-carriage gaps.And the accuracy of the numerical method was validated by combining with the experimental data of wind tunnel tests.Then,the variations of aerodynamic forces and surface pressure distribution of the train were mainly analyzed.The results show that the surroundings of cuts along the railway line have a great effect on the crosswind stability of trains.With the slope angle and depth of the cut increasing,the coefficients of aerodynamic forces tend to reduce.An angle of 75°is chosen as the optimum one for the follow-up research.Under different depth conditions,the reasonable cut depth for high-speed trains to run safely is 3 m lower than that of the conventional cut whose slope ratio is 1:1.5.Furthermore,the windward slope angle is more important than the leeward one for the train aerodynamic performance.Due to the shield of appropriate cuts,the train body is in a minor positive pressure environment.Thus,designing a suitable cut can contribute to improving the operation safety of high-speed trains. 展开更多
关键词 high-speed train crosswind stability cut pressure distribution numerical simulation
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