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A Wind Tunnel Study Correlating the Aerodynamic Effect of Cooling Flows for Full and Reduced Scale Models of a Passenger Car

机译:风洞研究将冷却流的空气动力学效应与乘用车的全尺寸模型相关联

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In the early stages of an aerodynamic development program of a road vehicle it is common to use wind tunnel scale models. The obvious reasons for using scale models are that they are less costly to build and model scale wind tunnels are relatively inexpensive to operate. It is therefore desirable for model scale testing to be utilized even more than it is today. This however, requires that the scale models are highly detailed and that the results correlate with those of the full size vehicle. This paper presents a correlation study that was carried out in the Chalmers and Volvo Car Aerodynamic Wind Tunnels. The aim of the study was to investigate how successfully a correlation of the cooling air flow between a detailed scale model and a real full size vehicle could be achieved. Results show limited correlation on absolute global aerodynamic loads, but relative good correlation in drag and lift increments. Furthermore, changes in local surface pressure on the underbody and base are in good agreement.
机译:在公路车辆的空气动力学发展计划的早期阶段,通常使用风洞尺度模型。使用比例模型的明显原因是,构建和模型刻度的昂贵昂贵的风隧道相对便宜。因此,希望模型测量测试比今天更容易使用。然而,这要求规模模型高度详细,结果与全尺寸车辆的结果相关联。本文提出了一种在Chalmers和Volvo汽车空气动力隧道中进行的相关研究。该研究的目的是探讨如何实现详细规模模型和真实全尺寸车辆之间的冷却空气流的相关性的成功。结果显示绝对全球空气动力负载有限,但拖曳增量的相关性相对良好。此外,局部表面压力的变化很好一致。

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