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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Investigation of vehicle stability under crosswind conditions based on coupling methods
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Investigation of vehicle stability under crosswind conditions based on coupling methods

机译:基于耦合方法的交叉风条件下车辆稳定性研究

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摘要

In this study, vehicle stability under crosswind conditions is investigated. A two-way coupling method is established based on computational fluid dynamics and vehicle multi-body dynamics. Large eddy simulation is employed in the computational fluid dynamics model to compute the transient aerodynamic load, and the accuracy of the large eddy simulation is validated with a wind tunnel experiment. The arbitrary Lagrange-Euler technique is used in the computational fluid dynamics simulation to realise vehicle motion, and a real-time data transmission method is employed to ensure effective exchange of data between the computational fluid dynamics and multi-body dynamics models. The robustness of the two-way coupling model is verified by changing the position of the vehicle centroid. The results of the two-way and one-way coupling simulations demonstrate that crosswinds significantly affect vehicle stability. There is a clear difference between the results obtained with the two methods, particularly after the disappearance of the crosswind. The main reason for the difference is that the interaction between the transient airflow and the vehicle movement is considered in the two-way coupling method. Therefore, investigations of vehicle stability under crosswind conditions should consider the coupling of transient aerodynamic force and vehicle movement.
机译:在该研究中,研究了在穿透条件下的车辆稳定性。基于计算流体动力学和车辆多体动态建立双向耦合方法。在计算流体动力学模型中使用大涡模拟以计算瞬态空气动力负载,并且大涡模拟的准确性通过风洞实验验证。在计算流体动力学模拟中使用任意拉格朗日 - 欧拉技术以实现车辆运动,并且采用实时数据传输方法来确保计算流体动力学和多体动力学模型之间的数据交换。通过改变车辆质心的位置来验证双向耦合模型的鲁棒性。双向和单向耦合模拟的结果表明,交叉风显着影响车辆稳定性。在两种方法获得的结果之间存在明显的差异,特别是在交叉风的消失之后。差异的主要原因是以双向耦合方法考虑瞬态气流与车辆运动之间的相互作用。因此,在穿透条件下对车辆稳定性的研究应考虑瞬态空气动力和车辆运动的耦合。

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