Effects of Tire Attributes on the Aerodynamic Performance of a Generic Car-Tire Assembly1

Shubham Rath, A. Untaroiu
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Abstract

The effect of tires on the overall aerodynamic drag in a car-tire assembly has been studied and deemed considerable from past studies. Previous studies focused on the tire attributes that have an impact on the aerodynamic performance of the vehicle. These tire attributes, however, have not been studied to the extent where one can get a better understanding of the impact of each of these attributes. This paper studies the impact that specific tire attributes have on the overall aerodynamic drag on the vehicle. A thorough and systematic sensitivity study of the effect of tire attributes of a standalone tire was performed to better understand the flow structures around the car body and the improvement in the aerodynamic performance of the vehicle. In this study, the DrivAer model is used due to the extensive research that has been done on the model. Ansys FLUENT is used to run the Simulations on the fastback configuration of the DrivAer model. Coefficient of Drag and coefficient of pressure results from the simulations are validated from experimental data. This is used to create a simulation procedure with appropriate meshing techniques and solution methods in order to simulate for the baseline tire-vehicle assembly and the optimized tire-vehicle assembly. Data from these simulations are used to conduct a sensitivity analysis of the tire-vehicle assembly model to get better insight into the modelling techniques for a car-tire assembly, as well as the impact of the individual parameters for future tire model optimization.
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轮胎属性对通用汽车轮胎组件空气动力性能的影响1
轮胎对汽车轮胎总成整体空气阻力的影响已被研究过,并被过去的研究认为是相当大的。以往的研究侧重于对车辆空气动力性能有影响的轮胎属性。然而,对这些轮胎属性的研究还不足以让人们更好地了解每种属性的影响。本文研究了特定轮胎属性对车辆整体空气阻力的影响。为了更好地了解车身周围的流动结构以及车辆空气动力性能的改善情况,我们对独立轮胎的轮胎属性影响进行了全面系统的敏感性研究。由于对 DrivAer 模型进行了大量研究,因此本研究使用了该模型。使用 Ansys FLUENT 对 DrivAer 模型的快背配置进行模拟。模拟得出的阻力系数和压力系数与实验数据进行了验证。然后利用适当的网格划分技术和求解方法创建模拟程序,以便对基准轮胎-车辆组件和优化轮胎-车辆组件进行模拟。这些模拟数据用于对轮胎-车辆总成模型进行敏感性分析,以便更好地了解汽车-轮胎总成的建模技术,以及各个参数对未来轮胎模型优化的影响。
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