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An innovative experimental on-road testing method and its demonstration on a prototype vehicle

机译:一种创新的实验性公路测试方法及其在原型车上的演示

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摘要

Ground vehicle drag coefficient is herein obtained using an unconventional on-road test in real scale. At low-Re numbers, and as a function of velocity variations, transition introduces changes on the vehicle's drag coefficient. Therefore, the drag coefficient must be obtained as a function of velocity. Traditionally, only an average drag coefficient value is usually obtained using the coast down method. To obtain the on-road, velocity dependent, drag coefficients we introduce a new approach. The aerodynamic resistance coefficient is obtained by towing the vehicle with and without an aerodynamic shield, in order to eliminate the rolling resistance component. A detailed description of the method, its associated techniques, and related errors is presented. We conclude that the present experimental procedure is needed when comparing the experimental drag coefficient against computational results, since numerical computations are usually performed in a velocity dependent framework. Further, the same on-road test procedure is herein used to obtain the rolling and aerodynamic drag coefficient for a prototype vehicle working in the transition regime.
机译:此处,地面车辆的阻力系数是使用非常规的实际道路测试得出的。在低Re数下,并且作为速度变化的函数,过渡会导致车辆的阻力系数发生变化。因此,必须获得阻力系数作为速度的函数。传统上,通常使用惯性滑行法仅获得平均阻力系数值。为了获得道路上与速度有关的阻力系数,我们引入了一种新方法。为了消除滚动阻力分量,通过在有和没有空气动力学防护罩的情况下牵引车辆来获得空气动力学阻力系数。给出了该方法,其相关技术以及相关错误的详细描述。我们得出结论,将实验阻力系数与计算结果进行比较时需要本实验程序,因为数值计算通常在速度相关的框架内进行。此外,本文使用相同的道路测试程序来获得在过渡状态下工作的原型车辆的侧倾和空气阻力系数。

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