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Aerodynamic Development of the 2011 Chevrolet Volt

机译:2011雪佛兰Volt的空气动力学开发

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This paper presents some of the challenges and successful outcomes in developing the aerodynamic characteristics of the Chevrolet Volt, an electric vehicle with an extended-range capability. While the Volt's propulsion system doesn't directly affect its shape efficiency, it does make aerodynamics much more important than in traditional vehicles. Aerodynamic performance is the second largest contributor to electric range, behind vehicle mass. Therefore, it was critical to reduce aerodynamic drag as much as possible while maintaining the key styling cues from the original concept car. This presented a number of challenges during the development, such as evaluating drag due to underbody features, balancing aerodynamics with wind noise and cooling flow, and interfacing with other engineering requirements. These issues were resolved by spending hundreds of hours in the wind tunnel and running numerous Computational Fluid Dynamics (CFD) analyses. The end result is a unique electric vehicle that, at start of production, has the lowest coefficient of drag, C_D , of any Chevrolet sedan.
机译:本文提出了雪佛兰Volt的空气动力学特性开发方面的一些挑战和成功成果,雪佛兰Volt是一种具有增程能力的电动汽车。尽管Volt的推进系统不会直接影响其形状效率,但它的确使空气动力学比传统车辆更为重要。空气动力学性能是仅次于汽车质量的第二大电动范围贡献者。因此,在保持原始概念车的关键造型提示的同时,尽可能降低空气阻力至关重要。这在开发过程中提出了许多挑战,例如评估由于车身底部特征引起的阻力,在空气动力学与风噪声和冷却流之间取得平衡以及与其他工程需求的对接。通过在风洞中花费数百小时并运行大量计算流体动力学(CFD)分析,解决了这些问题。最终结果是一款独特的电动汽车,在生产开始时,其阻力系数C_D是雪佛兰轿车中最低的。

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