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Numerical Study of Active Aerodynamic Control via Flow Discharge on a High-Camber Rear Spoiler of a Road Vehicle

机译:公路车辆高弧形后扰流板流动放电有源空气动力控制的数值研究

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摘要

In this study, a numerical investigation of the active aerodynamic control via flow discharge was performed on a two-dimensional simplified vehicle with a spoiler. The analysis was performed using computational fluid dynamics techniques based on the unsteady Reynolds averaged Navier−Stokes equations. Unlike the conventional aerodynamic control methods, in which the control flow is forcibly injected to increase the lift or reduce the drag, the flow discharge method uses the ram air flow to reduce both the downforce and aerodynamic drag of a road vehicle. The technique of aerodynamic control via the flow discharge is applied to a simplified vehicle with a rear spoiler. For the isolated spoiler, at a discharge speed of 40% of the vehicle driving speed, the flow discharge at 75% of the chord exhibited a reduction of 4.5% and 1.8% in the aerodynamic drag and downforce reduction, respectively. For the vehicle with a spoiler, the drag and downforce were respectively reduced, on average, by 3.4% and 19.3% for a vehicle velocity range of 100−300 km/h; in this case, the discharge speed was 40% of the vehicle driving speed, and the discharge position was 75% of the chord owing to the interaction between the spoiler separation flow and vehicle wake.
机译:在该研究中,在具有扰流板的二维简化车辆上进行通过流动放电对主动空气动力控制的数值研究。使用基于非定常雷诺的计算流体动力学技术进行了分析,该技术是平均的Navier-Stokes方程。与传统的空气动力学控制方法不同,其中被强制注入控制流动以增加升力或减少阻力,流量排出方法使用RAM空气流动以减少道路车辆的下级和空气动力学阻力。通过流量放电的空气动力控制技术应用于具有后扰流板的简化车辆。对于隔离的扰流板,以40%的车辆驱动速度的排出速度,75%的曲线的流量放电分别在空气动力学阻力和减少的降低中表现出4.5%和1.8%。对于具有扰流板的车辆,载体和下压度分别平均减少3.4%和19.3%,用于100-300 km / h的载体速度范围;在这种情况下,由于扰流板分离流动和车辆唤醒之间的相互作用,放电速度为车辆驱动速度的40%,并且放电位置是弦的75%。

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  • 作者

    Hak Lim KIM; Sang Wook LEE;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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