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The Impact of Underbody Roughness on Rear Wake Structure of a Squareback Vehicle

机译:底层粗糙度对边锋车辆后尾结构的影响

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In this paper the effects of a rough underbody on the rear wake structure of a simplified squareback model (the Windsor model) is investigated using balance measurements, base pressure measurements and two and three component planar PIV. The work forms part of a larger study to develop understanding of the mechanisms that influence overall base pressure and hence the resulting aerodynamic drag. In the work reported in this paper the impact of a rough underbody on the base pressure and wake flow structures is quantified at three different ground clearances. The underbody roughness has been created through the addition of five roughness strips to the underbody of the model and the effects on the wake at ground clearances of 10.3%, 17.3% and 24.2% of the model height are assessed. All work has been carried out in the Loughborough University Large Wind Tunnel with a 1/4 scale model giving a blockage ratio of 4.4% for a smooth under-body or 4.5% with the maximum thickness roughness strips. The tests are conducted with a fixed ground plane. Results are presented for the base pressure distribution and these are compared against the stream-wise PIV results. This work demonstrates the need for rough underbody structures to be considered during base pressure investigations before any model scale work is conducted due to their influence on the wake structures.
机译:在本文中,使用平衡测量,基础压力测量和两个和三个组分平面PIV来研究简化面包模型的后唤醒结构(温莎模型)对后唤醒结构的效果。该工作构成了更大的研究,以了解对影响整体基础压力的机制的理解,从而产生导致的空气动力学阻力。在本文中报道的工作中,在三种不同的地间隙中量化了粗糙底部底部底部对基础压力和唤醒流动结构的影响。通过将五个粗糙条带添加到模型的另一个粗糙条带来的底层粗糙,并评估了模型高度为10.3%,17.3%和24.2%的地面间隙的效果。所有工作都在Loughborough大学大型风洞中进行,具有1/4级模型,堵塞比率为4.4%,对于平滑的体积或4.5%,最大厚度粗糙度条带。测试用固定地面平面进行。提出了基础压力分布的结果,并将这些与流明智的PIV结果进行比较。这项工作表明,在由于它们对唤醒结构的影响而进行的任何模型比例工作之前,在基础压力调查期间考虑粗糙的底部结构的需要。

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