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Experimental aerodynamic study of a car-type bluff body

机译:汽车型钝体的空气动力学实验研究

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The Ahmed body is used as a reference model for fundamental studies of car-type bluff body aerodynamics, in particular focused on the influence of the rear slant angle on the drag coefficient. The objectives of the present work are to obtain reliable drag coefficient comparable to the literature and to explain, based on the nature of the flow, its variation when changing the rear slant angle from 10° to 40°. The drag coefficients measured in both an open and a closed test sections differ by less than 0.5% which proves the reliability and reproducibility of the results. The sensitivity of the drag coefficient to some parameters such as the model roughness or the oncoming boundary layer and the lack of precise information on these parameters in the literature could explain the difference observed with the Ahmed drag coefficient data. The various types of measurement techniques used in the study underline their complementarity. The combination of particle image velocimetry and oil visualization provides a deeper understanding of the flow behaviour around the Ahmed body and a physical interpretation of the drag coefficient evolution.
机译:艾哈迈德(Ahmed)车身被用作汽车型钝体空气动力学基础研究的参考模型,尤其侧重于后倾斜角对阻力系数的影响。本工作的目的是获得与文献相当的可靠的阻力系数,并根据流动的性质解释在将后倾斜角从10°更改为40°时其变化。在开放和封闭测试区域中测得的阻力系数相差不到0.5%,这证明了结果的可靠性和可重复性。阻力系数对某些参数(如模型粗糙度或即将到来的边界层)的敏感性以及文献中缺乏有关这些参数的精确信息,可以解释与艾哈迈德阻力系数数据所观察到的差异。研究中使用的各种类型的测量技术突显了它们的互补性。颗粒图像测速技术和油液可视化技术的结合提供了对艾哈迈德身体周围流动行为的更深入了解,以及对阻力系数演化的物理解释。

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