Numerical Investigation on Aerodynamic Performance of a Racing Car by Drag Reduction

M. Hassan, M. Hassan, Mohammad Ali, M. Amin
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Abstract

Recent energy crisis has forced researchers to design fuel-efficient automobiles, where one of the main critical changes is to reduce aerodynamics drag created by fluid friction. At high speed, aerodynamics drag, especially the pressure drag, creates a substantial backward force, and hence, unwanted excess fuel is consumed to counterbalance this dragging effect, which hinders designing fuel-efficient automobiles. Hence, to mitigate this pressure drag, here in this work, numerical analyses have been done (i) to examine drag coefficient changes through incorporating aerodynamic vents at the front, at the rear, and both front and rear on the automobiles, (ii) to reduce drag force by utilizing exhaust gas to fill the low-pressure vortex, (iii) to investigate the effect of wheels on the overall drag resistance of the model. The ANSYS™ 2020 R1 Fluent module is used to perform this numerical simulation. Appreciable improvement on drag reduction can be found by incorporating above mentioned modifications on racing car body configuration.
采用减阻技术的赛车气动性能数值研究
最近的能源危机迫使研究人员设计节能汽车,其中一个主要的关键变化是减少流体摩擦产生的空气动力学阻力。在高速行驶时,空气动力阻力,尤其是压力阻力,会产生很大的后力,因此,多余的燃料会被消耗掉,以抵消这种阻力效应,从而阻碍了节能汽车的设计。因此,为了减轻这种压力阻力,在这项工作中,我们进行了数值分析(i)通过在汽车的前部、后部和前后安装气动通风口来检查阻力系数的变化,(ii)通过利用废气填充低压涡来减少阻力,(iii)研究车轮对模型整体阻力的影响。ANSYS™2020 R1 Fluent模块用于执行此数值模拟。通过对赛车车身配置进行上述修改,可以发现明显的减阻改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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