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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Experimental Comparison of the Aerodynamic Behavior of Fastback and Notchback DrivAer Models
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Experimental Comparison of the Aerodynamic Behavior of Fastback and Notchback DrivAer Models

机译:Fastback和Notchback DrivAer模型的空气动力学行为的实验比较

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摘要

The experimental investigation was conducted with a 25%-scaled realistic car model called "DrivAer" mounted in a wind tunnel. This model includes geometric elements of a BMW 3 series and an Audi A4, accommodating modular, rear-end geometries so that it represents a generalized modern production car. The measurements were done with two different DrivAer rear end configurations (fastback and notchback) at varying side-wind conditions and a Reynolds number of up to Re=3.2·10~6. An array of more than 300 pressure ports distributed over the entire rear section measured the temporal pressure distribution. Additionally, extensive flow visualizations were conducted. The combination of flow visualization, and spatially and temporally resolved surface pressure measurements enables a deep insight into the flow field characteristics and underlying mechanisms. Moreover, static pressure fluctuations indicate regions with a high turbulence level due to flow separation and interaction between different vortical structures. A directional decomposition of the pressure coefficient is demonstrated and acts generally normal to the surface of the vehicle, in the drag and lift direction.
机译:使用安装在风洞中的比例为25%的现实汽车模型“ DrivAer”进行了实验研究。该模型包括BMW 3系列和Audi A4的几何元素,可容纳模块化的后端几何形状,因此它代表了通用的现代量产车。在不同的侧风条件下,使用两种不同的DrivAer后端配置(快进和后退)进行了测量,并且雷诺数高达Re = 3.2·10〜6。分布在整个后部的300多个压力端口组成的阵列测量了瞬时压力分布。另外,进行了广泛的流动可视化。流动可视化以及在空间和时间上解析的表面压力测量的结合,使您可以深入了解流场特性和潜在机理。此外,静压波动表示由于流动分离和不同涡旋结构之间的相互作用而具有高湍流度的区域。展示了压力系数的方向分解,并且该方向分解通常在拖曳和提升方向上垂直于车辆表面。

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