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Experimental Investigation of Underbody Thermal and Aerodynamic Flow-Field Features

机译:对体外热和空气动力场特征的实验研究

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Underbody vehicle flows are poorly understood given the comparatively small field of research to draw upon; even more so in the case of crosswinds. With the advent of electric and hybrid electric vehicles and their increased cooling demands, there is a need for a link between the aerodynamic flow field and the thermodynamic response. Thus underbody research considering a yawing vehicle was conducted on a Chevrolet Aveo5 hatchback. The vehicle was outfitted with a heat source to provide a baseline analysis along thermocouples, pressure probes and flow visualization tufts. The climatic wind tunnel at the University Of Ontario Institute Of Technology's Automotive Centre of Excellence provided video data of the tufts and thermal imaging data of the heat source. This study has demonstrated that there is a strong link between underbody aerodynamics and the thermal field; however the underbody aerodynamics are more dominated by the geometric turbulent effects due to the rough underbody as opposed to the yawing direction of the vehicle.
机译:鉴于绘制的比较小领域,对底部车辆流量很差,较少;在交叉风的情况下也是如此。随着电动和混合动力电动汽车的出现及其提高的冷却需求,需要一种空气动力学流场和热力学反应之间的联系。因此,考虑到偏航车辆进行雪佛兰AVEO5掀背车进行了底层研究。车辆配备了热源,以沿热电偶,压力探针和流量可视化簇提供基线分析。安大略省大学天气隧道技术卓越机构的汽车卓越中心提供了塔布斯的视频数据和热源的热成像数据。本研究表明,底部空气动力学和热场之间存在强大的联系;然而,由于粗糙的底层而不是车辆的偏航方向,因此底层空气动力学更为主导。

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