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Large eddy simulation on the unsteady aerodynamics of a heavy duty truck in wind gust

机译:重型卡车在阵风中非定常空气动力学的大涡模拟

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Unsteady aerodynamic forces acting on a full-scale heavy duty truck were investigated using a large-eddy simulation technique. The numerical method adopted was first validated on a static condition measured at the DNW German-Dutch wind tunnels. After the correction of the blockage ratio in the wind tunnel, the drag coefficient obtained by our numerical method showed good agreement with the experimental data within the errors of less than 5 %. Effect of an air deflector mounted on the top of a cabin was also discussed. Then the method was applied to non-stationary conditions in which the truck was subjected to ambient perturbation of approaching flow. The perturbation of the flow is a model of atmospheric turbulence, and sinusoidal crosswind velocity profiles were imposed on the uniform incoming flow with its wavelength comparable to the vehicle length. As a result, it was confirmed that when the wavelength of the crosswind is close to the vehicle length, averaged drag increases by more than 10% and down-force decreases by about 60%, compared with the case without perturbation.
机译:使用大型涡流模拟技术研究了作用在大型重型卡车上的非稳态空气动力。首先采用的数值方法是在DNW德国-荷兰风洞测得的静态条件下进行验证的。对风洞中的阻塞率进行校正后,通过我们的数值方法获得的阻力系数在小于5%的误差内与实验数据显示出良好的一致性。还讨论了安装在机舱顶部的导流板的作用。然后,将该方法应用于非固定工况,在该工况中,卡车会受到周围流动的环境干扰。气流的扰动是大气湍流的模型,正弦横风速度分布图施加到均匀的进气流上,其波长可与车辆长度相媲美。结果,证实了当侧风的波长接近车辆长度时,与没有扰动的情况相比,平均阻力增加了10%以上,而下压力减小了约60%。

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