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Coupling analysis of unsteady aerodynamics and vehicle behavior with road input: Modeling and verification in road tests

机译:道路输入不稳定空气动力学和车辆行为的耦合分析:道路测试建模与验证

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This paper discusses that the unsteady aerodynamic forces caused by vehicle motion in road input have a large influence on the vehicle behaviors. In the present coupling analysis, unsteady aerodynamic forces were obtained by using the response functions for vehicle motion derived in our previous study. By attaching a protrusion on the roof which only measures about 3% of the vehicle height, pitch and heave motions are affected significantly by the change of unsteady aerodynamic effects. Due to the coupling of the unsteady aerodynamic forces and vehicle suspension responses, the vehicle behavior depends on the road input frequency. The pitch motion is enhanced in low-frequency road input ( 1.6 Hz). Meanwhile, the heave motion is suppressed over 1.2 Hz. Such vehicle behaviors were verified in actual running tests, and were consistent to the subjective evaluation of the drivers feeling. Comparing the unsteady aerodynamic coefficients to the equivalent vehicle specification factors, the aerodynamic inertia caused by pitch motion contributes to 39% of the rear vehicle mass inertia effect in pitch motion. This aerodynamic effect is important in designing suspension specifications of vehicles. These results show that the vehicle stability can be affected even by small detail in vehicle shape due to the unsteady aerodynamic forces.
机译:本文讨论了道路投入中车辆运动引起的不稳定空气动力对车辆行为产生了很大影响。在本耦合分析中,通过使用我们之前的研究中衍生的车辆运动的响应函数获得不稳定的空气动力力。通过在屋顶上安装突起,通过不稳定的空气动力学效应的变化,仅测量车辆高度的约3%,俯仰和升降动作的影响。由于不稳定的空气动力力和车辆悬浮响应的耦合,车辆行为取决于道路输入频率。在低频道路输入(1.6Hz)中,音高运动增强。同时,升降动作抑制了1.2 Hz。在实际运行测试中验证了这种车辆行为,并与司机感觉的主观评估一致。将不稳定的空气动力学系数与等同的车辆规格因子进行比较,由俯仰运动引起的空气动力学惯性有助于在节距运动中有助于后车辆质量惯量效应的39%。这种空气动力学效果在设计车辆的悬架规格方面很重要。这些结果表明,由于不稳定的空气动力力,即使通过车辆形状的小细节也可以影响车辆稳定性。

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