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Reducing drag of a commuter train, using engine exhaust momentum.

机译:利用发动机排气动量减少通勤火车的阻力。

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摘要

The objective of this thesis was to perform numerical investigations of two different methods of injecting fluid momentum into the air flow above a commuter train to reduce its drag. Based on previous aerodynamic modifications of heavy duty trucks in improving fuel efficiency, two structural modifications were designed and applied to a Metrolink Services commuter train in the Los Angeles (LA) County area to reduce its drag and subsequently improve fuel efficiency. The first modification was an L-shaped channel, added to the exhaust cooling fan above the locomotive roof to divert and align the exhaust gases in the axial direction. The second modification was adding an airfoil shaped lid over the L-shape channel, to minimize the drag of the perturbed structure, and thus reduce the overall drag.;The computational fluid dynamic (CFD) software CCM+ from CD-Adapco with the ?-? turbulence model was used for the simulations. A single train set which consists of three vehicles: one locomotive, one trailer car and one cab car were used. All the vehicles were modeled based on the standard Metrolink fleet train size. The wind speed was at 90 miles per hour (mph), which is the maximum speed for the Orange County Metrolink line. Air was used as the exhaust gas in the simulation. The temperature of the exhausting air emitting out of the cooling fan on the roof was 150 F and the average fan speed was 120 mph.;Results showed that with the addition of the lid, momentum injection results in reduced flow separation and pressure recovery behind the locomotive, which reduces the overall drag by at least 30%.
机译:本文的目的是对通勤列车上方的气流中注入流体动量以减小其阻力的两种不同方法进行数值研究。在对重型卡车进行空气动力学改进以提高燃油效率的基础上,设计了两种结构改进方法,并将其应用于洛杉矶(LA)县地区的Metrolink Services通勤列车,以减少阻力并随后提高燃油效率。第一种修改是L型通道,该通道添加到机车顶盖上方的排气冷却风扇中,以沿轴向转移和对齐排气。第二个修改是在L形通道上增加了一个翼型盖,以最大程度地减少扰动结构的阻力,从而减小整体阻力。; CD-Adapco的CFD +计算流体动力学(CFD)软件,带有?- ?湍流模型用于仿真。使用了由三辆车组成的单列火车:一辆机车,一辆拖车和一辆出租车。所有车辆均基于标准Metrolink车队列车尺寸进行建模。风速为每小时90英里(mph),这是橙县Metrolink线的最高速度。在模拟中将空气用作废气。从屋顶上的冷却风扇排出的废气温度为150 F,平均风扇速度为120 mph;结果表明,在增加盖子的情况下,动量喷射会导致分离后的流体分离和压力恢复降低机车,可将总阻力降低至少30%。

著录项

  • 作者

    Ha, Dong Keun.;

  • 作者单位

    California State University, Long Beach.;

  • 授予单位 California State University, Long Beach.;
  • 学科 Aerospace engineering.
  • 学位 M.S.
  • 年度 2016
  • 页码 51 p.
  • 总页数 51
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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