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Aerodynamics and countermeasures of train-tail swaying inside single-line tunnels 被引量:1
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作者 Yadong SONG Yanpeng ZOU +2 位作者 Yuan YAO Ting QIN Longjiang SHEN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 2025年第5期438-455,共18页
In recent years,train-tail swaying of 160 km/h electric multiple units(EMUs)inside single-line tunnels has been heavily researched,because the issue needs to be solved urgently.In this paper,a co-simulation model of v... In recent years,train-tail swaying of 160 km/h electric multiple units(EMUs)inside single-line tunnels has been heavily researched,because the issue needs to be solved urgently.In this paper,a co-simulation model of vortex-induced vibration(VIV)of the tail car body is established,and the aerodynamics of train-tail swaying is studied.The simulation results were confirmed through a field test of operating EMUs.Furthermore,the influence mechanism of train-tail swaying on the wake flow field is studied in detail through a wind-tunnel experiment and a simulation of a reduced-scaled train model.The results demonstrate that the aerodynamic force frequency(i.e.,vortex-induced frequency)of the train tail increases linearly with train speed.When the train runs at 130 km/h,with a small amplitude of train-tail swaying(within 10 mm),the vortex-induced frequency is 1.7 Hz,which primarily depends on the nose shape of the train tail.After the tail car body nose is extended,the vortex-induced frequency is decreased.As the swaying amplitude of the train tail increases(exceeding 25 mm),the separation point of the high-intensity vortex in the train wake shifts downstream to the nose tip,and the vortex-induced frequency shifts from 1.7 Hz to the nearby car body hunting(i.e.,the primary hunting)frequency of 1.3 Hz,which leads to the frequency-locking phenomenon of VIV,and the resonance intensifies train-tail swaying.For the motor vehicle of the train tail,optimization of the yaw damper to improve its primary hunting stability can effectively alleviate train-tail swaying inside single-line tunnels.Optimization of the tail car body nose shape reduces the amplitude of the vortex-induced force,thereby weakening the aerodynamic effect and solving the problem of train-tail swaying inside the single-line tunnels. 展开更多
关键词 train tail swaying wind tunnel experiment field test single line tunnels AERODYNAMICS co simulation electric multiple units emus inside vortex induced vibration
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基于ADAMS的电动助力转向控制策略的研究
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作者 王可强 冯鉴 +1 位作者 段文军 张超 《煤矿机械》 2016年第12期147-149,共3页
概述了基于某轿车的电动助力转向(EPS)的基本结构和数学模型,并依据数学模型和控制策略建立EPS的MATLAB/Simulink模型。利用多体动力学软件ADAMS/CAR模板功能建立整车多自由度模型,并在转向小齿轮pinion上添加助力扭矩,随后定义ADAMS/CA... 概述了基于某轿车的电动助力转向(EPS)的基本结构和数学模型,并依据数学模型和控制策略建立EPS的MATLAB/Simulink模型。利用多体动力学软件ADAMS/CAR模板功能建立整车多自由度模型,并在转向小齿轮pinion上添加助力扭矩,随后定义ADAMS/CAR和Simulink软件的接口,2个软件进行联合仿真,对蛇形和双扭线2种工况经行了试验,对比有无助力的情况下方向盘手力矩的大小。仿真结果表明装备了EPS控制的轿车转向轻便性改善,提高了驾驶员的安全舒适性。 展开更多
关键词 电动助力转向 联合仿真 控制策略 软件接口
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重型越野汽车DMEPS系统设计与验证
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作者 史小川 高锦 +1 位作者 虎忠 周元豪 《汽车实用技术》 2017年第18期61-65,共5页
为研究电动助力转向对重型军用越野汽车操纵性及燃油经济性的改善情况,同时为混合动力技术在重型越野汽车的应用做技术储备,根据重型车辆前桥轴荷较大的特点,设计了基于双电机的电子助力转向系统(DMEPS)。依据目标车型的性能参数及DMEP... 为研究电动助力转向对重型军用越野汽车操纵性及燃油经济性的改善情况,同时为混合动力技术在重型越野汽车的应用做技术储备,根据重型车辆前桥轴荷较大的特点,设计了基于双电机的电子助力转向系统(DMEPS)。依据目标车型的性能参数及DMEPS控制策略,以车辆动力学仿真软件ADAMS和Simulink为平台,建立了目标车型的整车动力学和控制策略联合仿真模型。重点仿真研究DMEPS系统控制策略的响应跟随能力及系统对整车转向轻便性的影响。并通过快速原型控制器对控制策略进行了台架试验验证,结果表明,文章设计的DMEPS系统控制策略具有良好的响应跟随能力,同时与常规液压助力转向系统相比,在转向轻便型方面具有明显的优势。 展开更多
关键词 助力转向系统 永磁同步电机 控制策略 联合仿真
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