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VORTEX GENERATOR DESIGNS TO IMPROVE FLOW FOR A VEHICLE SIDE-VIEW MIRROR

机译:涡流发生器设计,可改善车辆侧视镜的流量

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The unsteady airflow over automotive side-view mirrors is a typical source of turbulence which creates extra drag force, aerodynamic noise and vibration. A CFD analysis is presented for vortex generators (VGs) application on the vehicle side-view mirrors for the purpose of flow improvement. Vortex generators are used to delay flow separation and increase the control surfaces which affect the drag force and down force of the vehicle. Reduced drag force can potentially increase fuel economy, and an increased downforce will increase vehicle grip force and improve vehicle stability which is essential for racing cars. This paper presents practical solutions for mitigating flow turbulence and adjusting down force for existing side-view mirrors. Four VG configurations were designed and numerically analyzed in combination with the baseline model at air speeds ranged from 15 to 80 miles per hour. This research investigated the effect of each VG configuration on the side-view mirror's aerodynamic performance. The turbulent flow through the side-view mirror were analyzed by using standard K-epsilon (K-ε) Reynolds-averaged Navier-Stokes method. The drag and down forces results were obtained and compared with the baseline model. The CFD analysis concluded the following: (1) Setting the VGs with a 5 degree attack angle on the upwind face of the mirror slightly reduced the drag force. (2) Setting the VGs at the top of the mirror surface greatly increased the downforce with a large drag force increase.
机译:汽车后视镜上不稳定的气流是典型的湍流源,会产生额外的阻力,空气动力噪声和振动。提出了用于车辆侧视镜上涡流发生器(VG)的CFD分析,以改善流量。涡流发生器用于延迟气流分离并增加影响车辆拖曳力和向下力的控制面。减小的阻力会潜在地增加燃油经济性,而增大的下压力则会增加车辆的抓地力并提高车辆的稳定性,这对于赛车至关重要。本文提出了一些实用的解决方案,以减轻现有侧面镜的气流紊流和调节下压力。设计了四种VG配置,并与基准模型相结合进行了数值分析,空速为每小时15到80英里。这项研究调查了每种VG配置对侧视镜空气动力学性能的影响。通过使用标准Kε(K-ε)雷诺平均Navier-Stokes方法分析通过后视镜的湍流。获得了下拉力结果,并将其与基线模型进行了比较。 CFD分析得出以下结论:(1)将VG以5度迎角设置在反射镜的迎风面上会略微减小阻力。 (2)将VG设置在镜面的顶部极大地增加了下压力,并增加了较大的阻力。

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