首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Experimental and numerical investigations of the vehicle aerodynamic drag with single-channel rear diffuser
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Experimental and numerical investigations of the vehicle aerodynamic drag with single-channel rear diffuser

机译:单通道后部扩散器的车辆空气动力学阻力的实验和数值研究

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The main purpose of this paper is to reveal the drag reduction mechanism of single-channel rear diffuser on the vehicle aerodynamic drag and to obtain the relationship between the structure parameters of rear diffuser and the vehicle aerodynamic drag. The influence of the single-channel rear diffuser on the aerodynamic drag is studied using the Reynolds-averaged method with the 25 degrees slant Ahmed model. The accuracy of the numerical method is validated by means of a wind tunnel test. The aerodynamic performance of the Ahmed model with different vertical diffuser angles, lateral diffuser angles, and channel widths is discussed. The results demonstrate that the vortex location will be influenced by the vertical diffuser angle, and with the vortex core approaching to the model, the aerodynamic drag will increase. The aerodynamic drag reaches the minimum value with a vertical diffuser angle of 10.46 degrees. Moreover, the aerodynamic drag decreases with increasing channel width. Finally, the aerodynamic drag can be reduced by 5.3%, when the vertical diffuser angle, lateral diffuser angle, and channel width are 10.46 degrees, 0 degrees, and 351 mm, respectively.
机译:本文的主要目的是揭示车辆空气动力学阻力对单通道后部扩散器的阻力机制,并获得后扩散器的结构参数与车辆空气动力学阻力之间的关系。使用具有25度倾斜αHMED模型的雷诺平均方法研究了单通道后部扩散器对空气动力学阻力的影响。通过风洞测试验证了数值方法的准确性。讨论了具有不同垂直扩散器角度,横向漫射角和沟道宽度的Ahmed模型的空气动力学性能。结果表明,涡流位置将受到垂直扩散角的影响,并且随着涡旋核心接近模型,空气动力学阻力将增加。空气动力学阻力达到最小值,垂直扩散角为10.46度。此外,空气动力学阻力随着沟道宽度的增加而降低。最后,当垂直扩散角角度,横向漫射角和沟道宽度分别为10.46度,0度和351mm时,空气动力学阻力可以减少5.3%。

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