首页> 外文会议>ASME Fluids Engineering Division summer conference;FEDSM2009 >INVESTIGATION OF THE COOLING AND UNDERBODY FLOW FIELD ON A DETAILED MODEL SCALE PASSENGER CAR. PART 1 -COOLING FLOWS AND REYNOLDS NUMBER EFFECTS
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INVESTIGATION OF THE COOLING AND UNDERBODY FLOW FIELD ON A DETAILED MODEL SCALE PASSENGER CAR. PART 1 -COOLING FLOWS AND REYNOLDS NUMBER EFFECTS

机译:在详细的模型式乘用车上进行冷却和车身流场的研究。第1部分-冷却流和雷诺数效应

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摘要

To decrease the lead time and hence cost for an aerodynamic development programme for a new car model, extended use of down scaled wind tunnel models is one possibility. This however, requires that the models carry many of the exterior, engine bay and underbody details that are present on the full scale counterpart. An important issue in scale testing is to understand the Reynolds number effects that will be present and with an increased detail level of the model it is believed that there will be other Reynolds number effects than on the simplified models that historically have been used. Therefore; the aim of this work is to explain some of the Reynolds number effects that are developed on a detailed model of a sedan type passenger car. The analysis is based on experimental data with both load and pressure measurements as the primary source carried out on a 30% model of a Volvo S60. In the experiment both moving ground and rotating wheels were utilizedWith the Reynolds number ranging from 8.8e5 to 3.5e6 it was possible to notice interesting Reynolds number effects. The results show that there is a significant Reynolds number dependency of the scale model. However, it is also shown that the Reynolds number dependency is dependent on the detail level of the model.
机译:为了减少交付时间,从而减少新车模型的空气动力学开发计划的成本,缩小比例的风洞模型的扩展使用是一种可能。但是,这需要模型承载许多外观,发动机舱和车身底盘细节,而这些细节在全尺寸副本中都存在。规模测试中的一个重要问题是了解将要出现的雷诺数效应,并且随着模型详细程度的提高,人们相信除了历史上使用的简化模型之外,还会有其他雷诺数效应。所以;这项工作的目的是解释在轿车型乘用车的详细模型上开发的一些雷诺数效应。该分析基于以负载和压力测量为主要数据的实验数据,该数据是在Volvo S60的30%模型上进行的。在实验中,动轮和转轮都被利用 雷诺数范围从8.8e5到3.5e6,有可能注意到有趣的雷诺数效应。结果表明,比例模型存在显着的雷诺数依赖性。但是,还显示出雷诺数依赖性取决于模型的详细程度。

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