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Aerodynamic Interference between Two Road Vehicle Models during Overtaking

机译:超车时两种公路车辆模型之间的空气动力干扰

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Using experimental (particle-image velocimetry and force measurement) and numerical tools [steady Reynolds-averaged Navier-Stokes (RANS) equations with the shear stress transport (SST) k-omega turbulence model], the overtaking maneuver between two identical vehicle models was examined. Considering the maneuver to be quasi-steady, one of the models (overtaken vehicle) was fixed while the other (overtaking vehicle) was set at various axial distances from the overtaken vehicle. The lateral clearance between the vehicles was constant and equal to 35% of the vehicles' width. Due to the existence of an overpressure region upstream of the front of the overtaking vehicle, a side force was applied on the overtaken vehicle. Moreover, due to low pressures in the space between the two vehicles, a reduction in the base pressure of the overtaken vehicle caused an increase in its drag. Both forces and the yaw moment varied significantly when the front of the overtaking vehicle moved from the rear of the overtaken toward its front.
机译:使用实验(颗粒图像测速和力测量)和数值工具[具有剪切应力传输(SST)k-ω湍流模型的稳定雷诺平均Navier-Stokes(RANS)方程],在两个相同的车辆模型之间进行了超车操作检查。考虑到操纵是准稳定的,其中一个模型(超车)是固定的,而另一个模型(超车)则设置为与超车的轴向距离不同。车辆之间的横向间隙是恒定的,等于车辆宽度的35%。由于在超车车辆前方的上游存在超压区域,因此在超车车辆上施加了侧向力。而且,由于两辆车之间的空间中的低压,超车车辆的基本压力降低导致其阻力增加。当超车车辆的前部从超车车辆的后部向其前部移动时,力和横摆力矩都会发生很大变化。

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