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STUDY ON THE AERODYNAMIC CHARACTERISTICS OF WHEELS AND WHEELHOUSES OF ROAD VEHICLES

机译:道路车辆轮毂和气室的气动特性研究

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According to the international findings of experiments, the addition of whcelhouscs and rotating wheels to an acrodynamically optimized car body results in an increase in drag- and lift coefficients by 30% and 40%, respectively. Some of the publications report the dominance of the effect of rear wheels over that of the front wheels in drag increase for the case of both model and full scale cars. In the past years extensive investigations were carried out by using CFD tools to determine an appropriate model of the flow field inside whcelhouscs of cars. In this paper the flow field is computed by means of RANS modeling.The paper summarizes the results of the investigation on the effect of whcelhouscs and wheels mounted on a given configuration of the well known Ahmed-body. The Ahmed-body was chosen because a number of results from both experimental and numerical investigations on this body without wheels arc available in the literature. This gave the basis for validation of the CFD results.Most of the investigations, including also the present ones were mostly carried out by using simplified wheels without detailed tread and rim. As the geometry and the opening of wheel rims plays essential role regarding to the cooling of brake discs authors investigated the effect of open wheel rims on the topology of the flow field within the wheclhouse as well, as their effect on the force acting on the simplified vehicle model. For the investigation of the effect of the wheel rim openings the generic vehicle body (Ahmed-body) was used. Three different configurations were then investigated where the difference was the amount of opening of the rim. Besides the investigation of the flow field topology the change of ferees acting on different surfaces of the vehicle model arc analyzed by means of integration of static pressure and shear stress distributions.In this study ANSYS-Flucnt 6.3 software was used for detailed flow field analysis, validated against measurements published in the corresponding literature. Conclusions concerning the mechanism of change in flow field topology and that of the forces acting on various parts of the vehicle arc drawn.
机译:根据国际实验发现,在经过动力学优化的车身中添加白铁矿和旋转车轮会分别导致阻力系数和提升系数分别增加30%和40%。一些出版物报道了在模型车和全尺寸车的情况下,在增加阻力后,后轮的作用比前轮的作用更重要。在过去的几年中,通过使用CFD工具进行了广泛的研究,以确定汽车内部流场的合适模型。在本文中,流场是通过RANS建模来计算的。 本文总结了关于在已知的艾哈迈德车身的给定配置上安装的车轮和车轮的影响的研究结果。之所以选择艾哈迈德(Ahmed)车身,是因为在没有车轮的情况下,从该车身的实验和数值研究得出的许多结果都可以从文献中获得。这为验证CFD结果提供了基础。 大多数研究,包括目前的研究,大多是通过使用没有详细的胎面和轮辋的简化车轮进行的。由于轮辋的几何形状和开口对于制动盘的冷却起着至关重要的作用,因此作者研究了开放轮辋对轮毂内部流场拓扑的影响,以及它们对作用在简化轮毂上的力的影响。车辆模型。为了研究轮辋开口的影响,使用了通用车身(Ahmed车身)。然后研究了三种不同的配置,其中区别在于轮辋的开口量。除了研究流场拓扑外,还通过对静压力和切应力分布进行积分来分析作用在车辆模型不同表面上的费力变化。 在本研究中,ANSYS-Flucnt 6.3软件用于详细的流场分析,并根据相应文献中公布的测量结果进行了验证。得出关于流场拓扑变化的机制和作用在车辆各个部分上的力的结论。

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