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不同自行车骑行姿势的空气动力研究:CFD 分析和全尺寸风洞试验。

Aerodynamic study of different cyclist positions: CFD analysis and full-scale wind-tunnel tests.

机构信息

Laboratory of Building Physics, Department of Civil Engineering, Katholieke Universiteit Leuven, Kasteelpark Arenberg 40, 3001 Heverlee, Belgium.

出版信息

J Biomech. 2010 May 7;43(7):1262-8. doi: 10.1016/j.jbiomech.2010.01.025. Epub 2010 Feb 20.

Abstract

Three different cyclist positions were evaluated with Computational Fluid Dynamics (CFD) and wind-tunnel experiments were used to provide reliable data to evaluate the accuracy of the CFD simulations. Specific features of this study are: (1) both steady Reynolds-averaged Navier-Stokes (RANS) and unsteady flow modelling, with more advanced turbulence modelling techniques (Large-Eddy Simulation - LES), were evaluated; (2) the boundary layer on the cyclist's surface was resolved entirely with low-Reynolds number modelling, instead of modelling it with wall functions; (3) apart from drag measurements, also surface pressure measurements on the cyclist's body were performed in the wind-tunnel experiment, which provided the basis for a more detailed evaluation of the predicted flow field by CFD. The results show that the simulated and measured drag areas differed about 11% (RANS) and 7% (LES), which is considered to be a close agreement in CFD studies. A fair agreement with wind-tunnel data was obtained for the predicted surface pressures, especially with LES. Despite the higher accuracy of LES, its much higher computational cost could make RANS more attractive for practical use in some situations. CFD is found to be a valuable tool to evaluate the drag of different cyclist positions and to investigate the influence of small adjustments in the cyclist's position. A strong advantage of CFD is that detailed flow field information is obtained, which cannot easily be obtained from wind-tunnel tests. This detailed information allows more insight in the causes of the drag force and provides better guidance for position improvements.

摘要

三种不同的自行车手姿势通过计算流体动力学 (CFD) 进行了评估,风洞实验用于提供可靠的数据来评估 CFD 模拟的准确性。本研究的特点是:(1) 评估了稳态雷诺平均纳维-斯托克斯 (RANS) 和非稳态流动建模,以及更先进的湍流建模技术(大涡模拟-LES);(2) 自行车手表面的边界层完全通过低雷诺数建模来解决,而不是使用壁面函数来建模;(3) 除了阻力测量外,风洞实验还对自行车手身体的表面压力进行了测量,为 CFD 对预测流场的更详细评估提供了基础。结果表明,模拟和测量的阻力区域相差约 11%(RANS)和 7%(LES),这被认为是 CFD 研究中的密切一致。预测的表面压力与风洞数据具有良好的一致性,尤其是 LES。尽管 LES 的准确性更高,但由于其计算成本更高,在某些情况下 RANS 可能更具吸引力。CFD 被发现是评估不同自行车手姿势的阻力和研究自行车手位置小调整影响的有用工具。CFD 的一个主要优势是可以获得详细的流场信息,这是风洞测试难以获得的。这些详细信息可以更好地了解阻力的原因,并为位置改进提供更好的指导。

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