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Aerodynamic Analysis of a Passenger Car to Reduce Drag Using Active Grill Shutter and Active Air Dam

机译:用活性烤架快门和活跃式空气坝减少拖曳拖车的空气动力学分析

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Active aerodynamics can be defined as the concept of reducing drag by making real-time changes to certain devices such that it modifies the airflow around a vehicle. Using such devices also have the added advantages of improving ergonomics and performance along with aesthetics. A significant reduction in fuel consumption can also be seen when using such devices. The objective of this work is to reduce drag acting on a passenger car using the concept of active aerodynamics with grill shutters and air dams. First, analysis has been carried out on a baseline passenger car and further simulated using active grill shutters and air dams for vehicle speed ranging from 60 kmph to 120 kmph, with each active device open from 0° to 90°. The optimized model is then validated for a scaled down prototype in a wind tunnel at 80kmph. Vehicle has been modelled using SolidWorks tool and the simulation has been carried out using ANSYS Fluent. The result shows a significant drag reduction of 12.23% using active grill shutters and air dams.
机译:主动空气动力学可以被定义为通过对某些设备进行实时变化来减少阻力的概念,使得它改变了车辆周围的气流。使用这些设备还具有提高人体工程学和性能以及美学的额外优点。使用此类设备时,也可以看到燃料消耗的显着降低。这项工作的目的是减少使用具有烤架百叶窗和空气水坝的活动空气动力学的概念来减少乘客上的拖动。首先,在基线乘用车上进行了分析,并使用活动烤箱和空气坝进一步模拟,用于车速范围为60 kmph至120 kmph,每个有源器件从0°开到90°。然后在80kmph的风隧道中验证优化的模型以在风隧道中进行缩小的原型。车辆已经使用SolidWorks工具进行了建模,并且使用ANSYS流畅进行模拟。结果表明,使用活性烤肉百叶窗和空气坝,减少12.23%的显着减阻。

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