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NASCAR Race Vehicle Wake Modification via Passive Blown Ducts and its Effect on Trailing Vehicle Drag

机译:NASCAR赛车通过被动吹气管进行的尾迹修正及其对拖曳车辆阻力的影响

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The use of passive ducting from the vehicle nose out of the front wheel opening was studied as a method of modifying the wake profile of NASCAR race vehicle and its effect on drag of a trailing vehicle in various platoon configurations. Utilizing a fixed inlet area due to geometric constraints, exit angle, height and exit/inlet ratio were explored using multi-vehicle Computational Fluid Dynamics (CFD) simulations and wind tunnel validation. Results indicate that appropriately positioned ducts reduce trailing car drag throughout the range of vehicle spacing studied; most significantly, it reduces the drag peak for the trailing car at approximately one car length spacing. Increased exit area is shown to reduce drag for the trailing car, as well as increasing exit angle closer to perpendicular to the direction of travel. Aerodynamic efficiency was increased over baseline with the duct exit angle closer to the direction of travel, while it was negatively impacted with the ducts closer to perpendicular to the direction of travel. Wind tunnel testing confirmed that aerodynamic efficiency improvement was due to an increase in negative lift under the car while Kiel probe measurements validated the shape and positioning of the wake changes caused by the ducts.
机译:研究了从前鼻孔到前轮开口的被动风道的使用,作为修改NASCAR赛车的尾流轮廓及其对不同排配置的拖尾车阻力的影响的方法。由于几何约束,利用固定的进气口面积,使用多车辆计算流体动力学(CFD)模拟和风洞验证研究了出射角,高度和出入口比。结果表明,在整个研究的车辆间距范围内,适当放置的管道可减少拖曳的汽车拖曳阻力;最显着的是,它以大约一个车长的间距减小了拖尾车的阻力峰值。显示出增加的出口面积可减少拖尾车的阻力,并增加出口角,使其更接近垂直于行进方向。空气动力学效率在基线上增加,导管出口角度更接近行进方向,而空气动力学效率在导管更接近垂直于行进方向时受到负面影响。风洞测试证实,空气动力学效率的提高是由于汽车下方负升程的增加所致,而基尔(Kiel)探头的测量结果验证了由风道引起的尾流变化的形状和位置。

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