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Dynamic behaviors and mitigation measures of a train passing through windbreak transitions from ground to cutting 被引量:2
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作者 CHEN Zheng-wei LIU Tang-hong +3 位作者 GUO Zi-jian HUO Xiao-shuai LIWen-hui XIAYu-tao 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2675-2689,共15页
In this paper,the effects of a right-angle windbreak transition(RWT)from the flat ground to cutting on train aerodynamic and dynamic responses were investigated,then a mitigation measure,an oblique structure transitio... In this paper,the effects of a right-angle windbreak transition(RWT)from the flat ground to cutting on train aerodynamic and dynamic responses were investigated,then a mitigation measure,an oblique structure transition(OST)was proposed to reduce the impact of RWT on the train aerodynamic and dynamic performance.The results showed that in the RWT region,the airflow was divided into two parts.One part of the airflow induced a strong backflow in the flat ground position,and the other part of the airflow induced a strong backflow in the cutting position.Therefore,there were two lateral impacts on the train.For the head car with the OST,the drop ratios of the peak-to-peak values compared with RWT were 47%,40%,and 52%for the side force coefficient C_(Fy),lift force coefficient C_(Fz) and overturning moment coefficient C_(Mx),respectively.For the peak-to-peak value of the dynamic parameters,the drop ratios of OST compared with RWT were all larger than 50%.The maximum dynamic overturning coefficients for RWT and OST were 0.75 and 0.3,respectively. 展开更多
关键词 high-speed train windbreak wall CROSSWIND CFD train aerodynamics vehicle system dynamics
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动车侧墙板轮廓扫描装置及性能分析
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作者 孙奇 霍林涛 +2 位作者 夏海飞 刘英 杨雨图 《林业机械与木工设备》 2024年第3期71-75,共5页
动车组侧墙板是铁路车辆的关键组成部件,通常由高强度合金材料制成,受焊接和成型工艺影响,动车侧墙板与理论模型存在偏差。因此,当动车组侧墙板制成后,进行严格的质量检测是至关重要的。为了将腻子喷涂机应用于侧墙板制造过程中,改善侧... 动车组侧墙板是铁路车辆的关键组成部件,通常由高强度合金材料制成,受焊接和成型工艺影响,动车侧墙板与理论模型存在偏差。因此,当动车组侧墙板制成后,进行严格的质量检测是至关重要的。为了将腻子喷涂机应用于侧墙板制造过程中,改善侧墙板喷涂过后表面的平整度,设计了一种动车组侧墙板轮廓扫描装置。基于先进的激光测量技术,结合高精度的传感器与数据处理系统,能够快速准确地获取侧墙板表面的三维轮廓信息。相对于传统的测量装置,不受复杂曲面形态的限制。由于扫描装置在运行中不可避免地会产生振动,对数据采集过程会产生影响,利用加速度传感器,获取装置在扫描运行过程中的振动数据。通过对振动数据的分析,确定装置的主要振动模式,并进一步优化了相机的布局,较大程度降低了振动对数据采集产生的影响。 展开更多
关键词 动车侧墙板 轮廓扫描装置 振动分析 结构优化
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