首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >LARGE EDDY SIMULATION OF THE FLOW AROUND A DIFFUSER-EQUIPPED BLUFF BODY IN GROUND EFFECT
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LARGE EDDY SIMULATION OF THE FLOW AROUND A DIFFUSER-EQUIPPED BLUFF BODY IN GROUND EFFECT

机译:扩散作用下带散布器的浮体周围流动的大涡模拟

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Unsteady Large Eddy Simulation (LES) is carried out for the flow around a bluff body equipped with an underbody rear diffuser in close proximity to the ground, representing an automotive diffuser. The goal is to demonstrate the ability of LES to model underbody vortical flow features at experimental Reynolds numbers (1.01 × 10~6 based on model height and incoming velocity). The scope of the time-dependent simulations is not to improve on Reynolds-Averaged Navier Stokes (RANS), but to give further insight into vortex formation and progression, allowing better understanding of the flow, hence allowing more control. Vortical flow structures in the diffuser region, along the sides and top surface of the bluff body are successfully modelled. Differences between instantaneous and time-averaged flow structures are presented and explained. Comparisons to pressure measurements from wind tunnel experiments on an identical bluff body model shows a good level of agreement.
机译:对在钝体周围的流动进行非定常大涡模拟(LES),该钝体配备有靠近汽车的车身底部后扩散器,该扩散器是汽车的扩散器。目的是证明LES在实验雷诺数(基于模型高度和进入速度为1.01×10〜6)下对车身底部涡流特征进行建模的能力。与时间有关的模拟的范围不是要在雷诺平均纳维斯托克斯(RANS)上进行改进,而是要进一步了解涡流的形成和发展,从而更好地了解流动,从而实现更多的控制。成功地模拟了扩散器区域中沿着钝体的侧面和顶面的涡流结构。瞬时流和时间平均流结构之间的差异将被介绍和解释。在相同的钝体模型上对风洞实验中的压力测量结果进行比较,显示出很好的一致性。

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