首页> 外文会议>ASME/ASCE/IEEE joint rail conference 2011 >EXPERIMENTAL STUDIES ON AERODYNAMIC CHARACTERISTICS OF PANTOGRAPH SYSTEM ACCORDING TO THE PANTOGRAPH COVER CONFIGURATIONS FOR HIGH SPEED TRAIN
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EXPERIMENTAL STUDIES ON AERODYNAMIC CHARACTERISTICS OF PANTOGRAPH SYSTEM ACCORDING TO THE PANTOGRAPH COVER CONFIGURATIONS FOR HIGH SPEED TRAIN

机译:高速列车受电弓罩结构的受电弓系统气动特性的实验研究

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摘要

In this study, the aerodynamic characteristics of pantograph system according to the pantograph cover configurations for high speed train were investigated by wind tunnel test. Wind tunnel tests were conducted in the velocity range of 20~70m/s with scaled experimental pantograph models. The experimental models were 1/4 scaled simplified pantograph system which consists of a double upper arm and a single lower arm with a square cylinder shaped panhead. The experimental model of the pantograph cover is also 1/4 scaled and were made as 4 different configurations. It is laid on the ground plate which modeled on the real roof shape of the Korean high speed train. Using a load cell, the aerodynamic force such as a lift and a drag which were acting on pantograph system were measured and the aerodynamic effects according to the various configurations of pantograph covers were investigated. In addition, the total pressure distributions of the wake regions behind the panhead of the pantograph system were measured to investigate the variations of flow pattern. From the experimental test results, we checked that the flow patterns and the aerodynamic characteristics around the pantograph systems are varied as the pantograph cover configurations. In addition, it is also found that pantograph cover induced to decrease the aerodynamic drag and lift forces. Finally, we proposed the aerodynamic improvement of pantograph cover and pantograph system for high speed train.
机译:在这项研究中,通过风洞试验研究了根据高速火车的受电弓罩结构的受电弓系统的空气动力学特性。利用比例缩放实验受电弓模型在20〜70m / s的速度范围内进行了风洞测试。实验模型是1/4比例缩放的受电弓系统,该系统由一个双上臂和一个带有方形圆柱头的下臂组成。受电弓盖的实验模型也按比例缩放1/4,并制成4种不同的配置。它被放置在模仿韩国高速火车的真实车顶形状的地盘上。使用称重传感器,测量作用在受电弓系统上的空气动力,例如升力和阻力,并研究根据受电弓盖的各种构造的空气动力效果。此外,测量受电弓系统的云台后面的尾流区域的总压力分布,以研究流型的变化。从实验测试结果来看,我们检查了受电弓系统周围的流型和空气动力学特性是否随受电弓盖的配置而变化。另外,还发现受电弓覆盖物减小了空气动力阻力和升力。最后,我们提出了高速列车受电弓罩和受电弓系统的空气动力学改进方法。

著录项

  • 来源
  • 会议地点 Pueblo CO(US);Pueblo CO(US)
  • 作者单位

    School of Mechanical and Aerospace Engineering Seoul National University Seoul, South Korea;

    School of Mechanical and Aerospace Engineering Seoul National University Seoul, South Korea;

    School of Mechanical and Aerospace Engineering Seoul National University, Institute of Advanced Aerospace Technology Seoul, South Korea;

    School of Mechanical and Aerospace Engineering Seoul National University, Institute of Advanced Aerospace Technology Seoul, South Korea;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 铁路运输;
  • 关键词

  • 入库时间 2022-08-26 14:08:39

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