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Aerodynamic Characterization of the Design Changes for the Facelift of the VW Bora

机译:VW Bora的整体设计变化的空气动力学特征

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The recent facelift of the Chinese version of the VW Bora incorporated several changes of the styling of the upper body. In particular, front facia, A-Pillar and rear end were subject to design changes. As major effects on the aerodynamics performance were not expected, extensive wind tunnel testing for the upper body design changes was not included in the development plan except for final performance evaluation. Nevertheless, an aerodynamic study of the effects of the design changes was undertaken using a CFD based process. At the same time, the facelift offered the opportunity for reducing the aerodynamic drag by improving the underbody flow. The design of the engine undercover and the wheel spoilers were considered in this effort. For this purpose the CFD based aerodynamic study was extended to include respective design features. The whole study was carried out using a response surface method as a mathematical model to characterize and understand the effects of the design changes and their interactions. This approach allowed achieving best possible insight at a minimal effort. In addition, possible optima for the underbody optimization were identified. This helped to determine a possible trade-offs between cost and performance and also allowed a reduced effort in the wind tunnel for fine tuning the underbody design changes.
机译:最近的中国版VW BORA的整容包括上半身造型的几个变化。特别是,前面的面板,a柱和后端受到设计变化。由于预期对空气动力学性能的主要影响,除了最终性能评估之外,对上身设计变化的广泛风洞测试不包括在开发计划中。然而,使用基于CFD的过程进行了对设计变化影响的空气动力学研究。与此同时,整容提供了通过改善底层流动来减少空气动力学阻力的机会。在这项工作中考虑了发动机卧底和车轮扰流板的设计。为此目的,基于CFD的空气动力学研究扩展到包括各自的设计特征。使用响应面方法作为数学模型进行整个研究,以表征和理解设计变化的影响及其交互。这种方法允许以最小的努力实现最佳的洞察力。此外,还确定了用于底层优化的可能最佳优化。这有助于确定成本和性能之间可能的权衡,并且还允许在风洞中减少努力,以便微调底层设计变化。

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