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Research on transient aerodynamic characteristics of windshield wipers of vehicles

机译:汽车挡风玻璃刮水器瞬态空气动力特性研究

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Purpose The main purpose of this paper is to gain a better understanding of the transient aerodynamic characteristics of moving windshield wipers. In addition, this paper also strives to illustrate and clarify how the wiper motion impacts the airflow structure; the aerodynamic interaction of two wipers is also discussed. Design/methodology/approach A standard vehicle model proposed by the Motor Industry Research Association and a pair of simplified bone wipers are introduced, and a dynamic mesh technique and user-defined functions are used to achieve the wiper motion. Finite volume methods and large eddy simulation (LES) are used to simulate the transient airflow field. The simulation results are validated through the wind tunnel test. Findings The results obtained from the study are presented graphically, and pressure, velocity distributions, airflow structures, aerodynamic drag and lift force are shown. Significant influences of wiper motion on airflow structures are achieved. The maximum value of aerodynamic lift and drag force exists when wipers are rotating and there is a certain change rule. The aerodynamic lift and drag force when wipers are rotating downward is greater than when wipers are rotating upward, and the force when rotating upward is greater than that when steady. The aerodynamic lift and drag forces of the driver-side wiper is greater than those of the passenger-side wiper. Originality/value The LES method in combination with dynamic mesh technique to study the transient aerodynamic characteristics of windshield wipers is relatively new.
机译:目的本文的主要目的是更好地了解移动式雨刷器的瞬态空气动力学特性。此外,本文还试图说明和阐明刮水器运动如何影响气流结构。还讨论了两个刮水器的空气动力学相互作用。设计/方法/方法介绍了由汽车工业研究协会提出的标准车辆模型和一对简化的刮水器,并使用了动态网格技术和用户定义的功能来实现刮水器运动。有限体积法和大涡模拟(LES)用于模拟瞬态气流场。通过风洞试验验证了仿真结果。结果以图形方式显示了从研究中获得的结果,并显示了压力,速度分布,气流结构,气动阻力和升力。达到了刮水器运动对气流结构的重要影响。雨刮器旋转时,存在气动升力和阻力的最大值,并且存在一定的变化规律。雨刮器向下旋转时的气动升力和阻力大于雨刮器向上旋转时的气动升力和阻力,而向上旋转时的力大于稳定时的力。驾驶员侧刮水器的空气动力学升力和阻力大于乘客侧刮水器的空气动力学升力和阻力。独创性/价值结合动态网格技术的LES方法研究雨刷的瞬态空气动力学特性是比较新的。

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