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Comparison of Computational Simulation of Automotive Spinning Wheel Flow Field with Full Width Moving Belt Wind Tunnel Results

机译:汽车旋转轮流场与全宽运动带风洞结果的计算仿真比较

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摘要

One of the remaining challenges in the simulation of the aerodynamics of ground vehicles is the modeling of the airflows around the spinning tires and wheels of the vehicle. As in most advances in the development of simulation capabilities, it is the lack of appropriately detailed and accurate experimental data with which to correlate that holds back the advance of the technology. The flow around the wheels and tires and their interfaces with the vehicle body and the ground is a critical area for the development of automobiles and trucks, not just for aerodynamic forces and moments, and their result on fuel economy and vehicle handling and performance, but also for the airflows and pressures that affect brake cooling, engine cooling airflows, water spray management etc. In the present exercise, the purpose is to supply this experimental data around the wheels and tires on two configurations of one production level vehicle in order to compare the results of CFD prediction with this data. In order to assure the most accurate experimental data, we conducted the vehicle tests in a wind tunnel with a full width belt simulation of the road movement instead of a fixed ground or a 5-Belt system commonly used in automotive work.
机译:地面车辆的空气动力学模拟中仍然存在的挑战之一是对车辆旋转轮胎和车轮周围的气流进行建模。与仿真功能开发中的大多数进步一样,正是由于缺乏与之相关的适当详细和准确的实验数据,才阻碍了技术的进步。车轮和轮胎周围的流动及其与车身和地面的界面是汽车和卡车发展的关键领域,这不仅是空气动力和力矩,而且是燃油经济性,车辆操纵性和性能的结果,也用于影响刹车冷却,发动机冷却气流,喷水管理等的气流和压力。在本练习中,目的是在一种生产水平车辆的两种配置下围绕车轮和轮胎提供此实验数据,以便进行比较使用此数据进行CFD预测的结果。为了确保获得最准确的实验数据,我们在风洞中进行了车辆测试,并在道路上使用了全宽皮带模拟运动,而不是在汽车工作中通常使用固定地面或5带系统。

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