高速列车受电弓不同姿态下气动特性分析
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O351

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内蒙古自治区自然科学基金资助项目(2018LH01011);内蒙古自治区高等学校科学技术研究项目资助项目(NJZY17105);内蒙古工业大学科学研究项目资助项目(ZD201706)


Aerodynamic Characteristics of High-Speed Train Pantograph in Different Operation
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    摘要:

    通过建立受电弓-列车-接触网系统模型,基于横风条件下,采用分离涡模拟方法研究受电弓不同姿态运行时的非定常气动特性,分析了三维绕流场内涡量、流线、压力等的变化规律,以及不同姿态下受电弓气动力、力矩系数的时程变化规律及频域特性,探讨了受电弓闭口运行与开口运行时绕流特性的差异。结果表明:在闭口姿态时,底座和下臂部分流场区域受到强烈干扰,在开口姿态时,滑板和上臂部分流场区域受到较强扰动;相对于闭口姿态,开口姿态中 和 的时均值增加了8.3%和10%,其波动量相差在7%以内, 的波动量为闭口姿态的30%左右,其最大值和最小值是闭口姿态的1.4倍和4.2倍;开口姿态下 、 和 的增幅值分别为 、 和3%, 和 的波动量增加了13.6%和7.2%, 的波动量增幅为闭口姿态工况的1.5倍。研究结果对横风作用下受电弓不同姿态运行的气动特性研究及应用具有重要意义和价值。

    Abstract:

    For the high-speed train pantograph prototype, establish a pantograph-train-contact network system model, using the simulation method of separating vortex, the unsteady aerodynamic characteristics of open operation and the closed operation ware analyzed with the crosswind action. The variation law of vorticity, streamline and pressure in the three-dimensional flow field was obtained. The time-domain and frequency domain characteristics of the pantograph aerodynamic and moment coefficients in different attitudes ware analyzed. The distribution law of the pressure field and the difference between flow characteristics of the pantograph in closed operation and the open operation was discussed. The results show that in the closed operation, the flow field of the chassis and the lower arm was strongly disturbed. In the opening operation, the flow field area of the sliding plate and the upper arm portion was strongly disturbed. Compared with the closed operation, the average value of and in the opening operation ware increased by 8.3% and 10%, and the fluctuation amount was within 7%. The fluctuation amount of is about 30% of the closed operation, and the maximum minimum value ware closed operation of 1.4 times and 4.2 times. The average time of and increases by 6.7% and 2.3% in the open operation, the fluctuation increases by 13.6% and 7.2%, and the average value of increases by 3%, but the fluctuation increases greatly. The maximum value is the closed operation of 1.5 times the situation. The research results have important significance and value for the study and application of unsteady aerodynamic characteristics of pantograph under crosswind.

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赵萌,刘晓禹,贾彦,等. 高速列车受电弓不同姿态下气动特性分析[J]. 科学技术与工程, 2020, 20(14): 5468-5475.
Zhao Meng, Liu Xiaoyu, Jia Yan, et al. Aerodynamic Characteristics of High-Speed Train Pantograph in Different Operation[J]. Science Technology and Engineering,2020,20(14):5468-5475.

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  • 收稿日期:2019-08-07
  • 最后修改日期:2020-02-11
  • 录用日期:2019-10-10
  • 在线发布日期: 2020-06-11
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