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Influence of afterbody rounding on the pressure distribution over a fastback vehicle

机译:尾部倒圆对后备箱车辆压力分布的影响

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摘要

Experimental analyzes were performed to understand the drag evolution and the flow field modifications resulting from afterbody rounding on the Ahmed body, a simplified vehicle model with 25 degrees rear slant. Curvature effects were investigated using balance measurements, flow visualizations, wall pressure, and particle image velocimetry measurements. The rear end of the original well-known Ahmed body has sharp connections between the roof and the rear window as well as squared rear pillars. Similarly to previous studies, rounding the roof/backlight intersection was shown to reduce drag up to 16 %. Surprisingly, additional rear curvature associated with side pillar rounding did not further modify the drag. However, the zero net effect was found to result from opposite drag effects on the slanted and vertical surfaces and to hide strong local modifications on the flow field. The tridimensional organization and vorticity transport in the near wake were analyzed and connected to the observed local increase in the pressure drag on the base. Finally, these results were shown to be generic for a realistic rounded-end car shape.
机译:进行了实验分析,以了解由艾哈迈德车身上的后车身倒圆导致的阻力演变和流场修改,该车身模型是后倾角度为25度的简化车型。使用平衡测量,流量可视化,壁压力和颗粒图像测速测量研究了曲率效应。最初著名的艾哈迈德(Ahmed)车身的后端在车顶和后车窗以及方形后支柱之间具有清晰的连接。与以前的研究相似,对屋顶/背光交叉点进行倒圆可以将阻力降低多达16%。出人意料的是,与侧柱倒圆相关的附加后曲率并未进一步改变阻力。但是,发现零净效应是由倾斜和垂直表面上相反的阻力效应引起的,并且在流场上隐藏了强烈的局部变形。分析了近尾流中的三维组织和涡流传输,并将其与观察到的基座上压力阻力的局部增加联系起来。最后,这些结果显示出对于逼真的圆端汽车形状是通用的。

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