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铁路超限货车曲线通过时车货位姿解算与安全评估研究
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作者 王宏杰 庞家洪 +2 位作者 KASIMU Aliyu 刘东润 周伟 《五邑大学学报(自然科学版)》 CAS 2024年第2期27-33,共7页
大型变压器与发电机定子等超限装备的铁路安全运输,是确保国家输电重点工程建设顺利实施的重要保障.针对超限货物装载边界与转向架之间的安全干涉空间计算校核,传统动力学仿真存在建模过程复杂、计算效率低等问题,本文提出一种基于多级... 大型变压器与发电机定子等超限装备的铁路安全运输,是确保国家输电重点工程建设顺利实施的重要保障.针对超限货物装载边界与转向架之间的安全干涉空间计算校核,传统动力学仿真存在建模过程复杂、计算效率低等问题,本文提出一种基于多级底架点-弦几何表征的超限货车曲线通过安全空间评估方法;建立了以曲线半径等线路参数、小/中/大底架心盘间距等车辆参数为输入的转向架-货物界面安全空间距离的理论解析模型,并分别通过动力学仿真进行了验证,不同导向方式下15种不同半径曲线通过的允许安全货物装载长度误差在3.68 mm以内、相对误差低于0.028%.本文提出的车货位姿解算评估方法,能准确高效地计算超限车辆运行过程中货物与转向架的安全干涉空间,可为铁路超限专列的安全开行提供科学计算依据. 展开更多
关键词 超限运输 车货干涉 曲线通过 安全评估
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Effect of ambient wind on pressure wave generated by high-speed train entering a tunnel 被引量:7
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作者 ZHOU Xi-sai liu Tang-hong +2 位作者 CHEN Zheng-wei ZOU Xiang liu dong-run 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第6期1465-1475,共11页
Using three-dimensional, unsteady N-S equations and k-ε turbulence model, the effect of ambient wind on the pressure wave generated by a high-speed train entering a tunnel was studied via numerical simulation. Pressu... Using three-dimensional, unsteady N-S equations and k-ε turbulence model, the effect of ambient wind on the pressure wave generated by a high-speed train entering a tunnel was studied via numerical simulation. Pressure changes of the train surface and tunnel wall were obtained as well as the flow field around the train. Results show that when the train runs downwind, the pressure change is smaller than that generated when there is no wind. When the train runs upwind, the pressure change is larger. The pressure change is more sensitive in the upwind condition than in the downwind condition. Compared with no wind condition, when the wind velocity is 10 m/s and 30 m/s, the pressure amplitude on the train head is reduced by 2.8% and 10.5%, respectively. The wall pressure amplitude at 400 m away from the tunnel entrance is reduced by 2.4% and 13.5%, respectively. When the wind velocity is-10 m/s and-30 m/s, the pressure amplitude on the train head increases by 3.0% and 17.7%, respectively. The wall pressure amplitude at 400 m away from the tunnel entrance increases by 3.6% and 18.6%, respectively. The pressure waveform slightly changes under ambient wind due to the influence of ambient wind on the pressure wave propagation speed. 展开更多
关键词 HIGH-SPEED TRAIN AMBIENT WIND pressure wave TUNNEL
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Effect of car-body lower-center rolling on aerodynamic performance of a high-speed train 被引量:1
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作者 liu dong-run LIANG Xi-feng +4 位作者 WANG Jia-qiang ZHONG Mu LU Zhai-jun DING Hu LI Xiao-bai 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2820-2836,共17页
The interaction between the car-body vibration and aerodynamic performance of the train becomes more prominent motivated by the vehicle’s light-weighting design.To address this topic,this study firstly analyzes the p... The interaction between the car-body vibration and aerodynamic performance of the train becomes more prominent motivated by the vehicle’s light-weighting design.To address this topic,this study firstly analyzes the posture characteristics of the car-body based on the previous full-scale test results.And then the aerodynamic performance under different vibration cases(different car-body roll angles)is studied with an improved delayed detached eddy simulation(IDDES).The results revealed that car-body rolling had a significant impact on the aerodynamic behavior of bogies,which significantly increased the lateral force and yaw moment of a bogie and further may have aggravated the operational instability of the train.The unbalanced distribution of the longitudinal pressure on both sides of the bogie caused by the car-body rolling motion was the primary cause for the bogie yaw moment increase.The tail vortex of the train was also affected by the car-body rolling,resulting in vertical jitter. 展开更多
关键词 lower-center rolling car-body vibration aerodynamic performance improved delayed detached eddy simulation(IDDES) high-speed train
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