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Aerodynamic Analysis of Race Car Using Active Wing Concept

机译:赛车空气动力学分析使用主动翼概念

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In high speed race cars, aerodynamics is an important aspect for determining performance and stability of vehicle. It is mainly influenced by front and rear wings. Active aerodynamics consist of any type of movable wing element that change their position based on operating conditions of the vehicle to have better performance and handling. In this work, front and rear wings are designed for race car prototype of race car. The high down force aerofoil profiles have been used for design of front and rear wing. The first aerodynamic analysis has been performed on baseline model without wings using CFD tool. For investigation, parameters considered are angle of attack in the range of 0-18° for front as well as rear wing at different test speeds of 60, 80, 100 and 120 kmph. The simulation is carried out by using ANSYS Fluent. The simulation results show significant improvement in vehicle performance and handling parameters. To validate the results, a scaled model prototype is manufactured and tested in wind tunnel.
机译:在高速赛车中,空气动力学是用于确定车辆性能和稳定性的重要方面。它主要受到前后翅膀的影响。主动空气动力学包括任何类型的可移动翼元件,可根据车辆的操作条件改变其位置,以具有更好的性能和处理。在这项工作中,前方和后翼设计用于赛车的赛车原型。高压机动空气型材已用于前翼设计。第一个空气动力学分析已经在基线模型上进行,无需使用CFD工具。对于调查,所考虑的参数是前部的0-18°的攻角,以及后翼的不同测试速度为60,80,100和120 kmph。通过使用ANSYS流畅的模拟来执行模拟。仿真结果显示了车辆性能和处理参数的显着改善。为了验证结果,在风隧道中制造和测试缩放模型原型。

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