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A Qualitative and Quantitative Aerodynamic Study of a Rotating Wheel inside a Simplified Vehicle Body and Wheel Liner Cavity

机译:简化车身和轮衬腔内旋转轮的定性和定量空气动力学研究

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As automotive OEMs (Original Equipment Manufacturer) struggle to reach a balance between Design and Performance, environmental legislations continues to demand more rapid gains in vehicle efficiency. As a result, more attention is being given to the contributions of both tire and wheels. Not only tire rolling resistance, but also tire and wheel aerodynamics are being shown to be contributors to overall efficiency. To date, many studies have been done to correlate CFD simulations of rotating wheels both in open and closed wheeled environments to windtunnel results. Whereas this ensures proper predictive capabilities, little focus has been given to thoroughly explaining the physics that govern this complex environment. This study seeks to exhaustively investigate the complex interactions between the ground, body, and a rotating tire/wheel. Quantitative and Qualitative assessments will be made of wakes, surface pressures, potential flow and how it changes in response to these wakes and wheel rotation. Ultimately, it was concluded from this study that the contribution of the tire rubber shape and wheel liner Cavity plays the largest role, impacting both the spoke and overall aerodynamics of the wheels and body.
机译:由于汽车OEM(原始设备制造商)在设计和性能之间达到平衡,环境法规继续要求在车辆效率方面更快地获得。结果,齿轮和轮子的贡献都会更加关注。不仅轮胎滚动阻力,而且还被证明轮胎和车轮空气动力学对整体效率有贡献。迄今为止,已经完成了许多研究,以将旋转轮的CFD模拟与闭合的轮式环境中的旋转轮仿真相关联。然而,这确保了适当的预测能力,因此已经彻底解释了管理这种复杂环境的物理学。该研究旨在详述地面,主体和旋转轮胎/轮之间的复杂相互作用。定量和定性评估将由唤醒,表面压力,潜在流动以及如何响应这些奶昔和车轮旋转而制成。最终,从这项研究中得出结论,轮胎橡胶形状和轮子衬里腔的贡献起着最大的作用,影响车轮和身体的辐条和整体空气动力学。

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