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双层集装箱车通过隧道气动性能实车试验研究 被引量:8
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作者 郭玉华 陈治亚 周丹 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2010年第3期1207-1211,共5页
在合武(合肥—武汉)铁路上进行250km/h等级隧道空气动力性能实车试验;对货物列车单列过隧道及货物列车与CRH2高速动车组在隧道内交会时,集装箱箱体表面的压力变化历程及所受的气动力进行测试。测试结果表明:当2列车在隧道内交会时,交会... 在合武(合肥—武汉)铁路上进行250km/h等级隧道空气动力性能实车试验;对货物列车单列过隧道及货物列车与CRH2高速动车组在隧道内交会时,集装箱箱体表面的压力变化历程及所受的气动力进行测试。测试结果表明:当2列车在隧道内交会时,交会压力波与隧道内的压力波叠加,造成隧道内列车交会产生的压力变化幅值远大于明线交会产生的压力变化幅值;车体交会侧压力变化幅值比非交会侧压力变化幅值大16%,使得车辆受到较大侧向力作用;双层集装箱车辆进入隧道口时,空气压差阻力急剧上升,之后又逐渐回落;在隧道内运行的平均阻力约为明线运行时阻力的1.56倍,货物列车120km/h和动车组250km/h在大别山隧道和鹰嘴石隧道内交会时,双层集装箱车由气动力引起的最大2s平均倾覆系数分别为0.063和0.067。 展开更多
关键词 双层集装箱车 隧道 压力波 空气动力学 试验
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双层集装箱车线路适应性分析
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作者 熊芯 王新锐 +2 位作者 曲金娟 陈政南 姜成 《铁道机车车辆》 2008年第3期22-24,共3页
总结了双层集装箱车3次运行试验和4次综合试验的振动加速度测量结果,对双层集装箱车的线路适应性进行了分析,对其车体垂向振动加速度较大的原因进行了分析。
关键词 双层集装箱车 动力学 体加速度 线路适应性
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X_(2H)型、X_(2K)型双层集装箱专用车
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作者 张四枚 《铁道车辆》 北大核心 2005年第7期17-20,40,共5页
介绍了我国铁路第1代双层集装箱车的主要特点、技术参数、主要结构及仿真计算、试验情况,并对其技术经济性进行了简单分析。
关键词 双层集装箱车 专用 技术参数
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Lateral aerodynamic performance and speed limits of double-deck container vehicles with different structures 被引量:2
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作者 李燕飞 田红旗 《Journal of Central South University》 SCIE EI CAS 2012年第7期2061-2066,共6页
Based on 3D, steady N-S equations and k-e turbulence model, Fluent was employed to do numerical simulation for lateral aerodynamic performance of 6-axis X2K double-deck container trains with two different loading form... Based on 3D, steady N-S equations and k-e turbulence model, Fluent was employed to do numerical simulation for lateral aerodynamic performance of 6-axis X2K double-deck container trains with two different loading forms, and speed limits of the freight trains were studied. The result indicates that under wind environment: 1) As for vehicles without and with cross-loaded structure, aero-pressure on the former is bigger, but air velocity around the latter is larger; 2) When sideslip angle θ=0°, the airflow is symmetry about train vertical axis; when θ〉0°, the airflow is detached at the top of vehicles, and the air velocity increases above the separated line but decreases below it; 3) With θ increasing, the lateral force on the mid vehicle firstly increases but decreases as θ=75°; 4) When the 6-axis X2K fiat car loads empty boxes of a 40 ft and a 48 ft at 120 km/h, the overturning wind speed is 25.19 m/s, and the train should be stopped under the 12th grade wind speed. 展开更多
关键词 numerical simulation 6-axis X2K flat car loading form lateral aerodynamic performance speed limit
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Aerodynamic drag analysis of double-deck container vehicles with different structures
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作者 李燕飞 田红旗 杨明智 《Journal of Central South University》 SCIE EI CAS 2011年第4期1311-1315,共5页
To study the aerodynamic performance of a new six-axis X2K double-deck container vehicle, numerical simulation was done based on three-dimensional, steady Navier-Stokes equations and k-e turbulence model. The results ... To study the aerodynamic performance of a new six-axis X2K double-deck container vehicle, numerical simulation was done based on three-dimensional, steady Navier-Stokes equations and k-e turbulence model. The results show that the pressure on the front surface of vehicle is positive, and others are negative. The maximum negative one appears as a "gate" shape on front surfaces. The pressure on vehicle increases with train speed, and pressure on vehicles with cross-loaded structure is smaller than that without it. The airflow around vehicles is symmetrical about train vertical axis, and the flow velocity decreases gradually along the axis to ground. Airflow around vehicles with cross-loaded structure is weaker than that without the structure. The aerodynamic drag increases linearly with the train speed, and it is minimum for the mid-vehicle. The linear coefficient for mid-vehicle without cross-loaded structure is 29.75, nearly one time larger than that with the structure valued as 15.425. So, from the view-point of aerodynamic drag, the cross-loaded structure is more reasonable for the six-axis X2K double-deck container vehicle. 展开更多
关键词 six-axis X2K double-deck container vehicle loading form aerodynamic drag numerical simulation
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