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Design of an Automatic Drag Reduction System Focusing on Cooling for Formula SAE Vehicle

机译:一种专注于公式SAE车辆冷却的自动阻力减速系统的设计

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The drag reduction system, commonly used in Formula 1, has as task to reduce the drag force that acts in the vehicle’s airfoils, increasing considerably its speed. When it comes to Formula SAE competition, since the speeds are lower than in F1, the purpose of the DRS can easily become the cooling, despite its name. This paper comes to the development of a drag reduction system applied to the frontal wing whose major objective is to increase the mass flow rate of air through the radiator. Based on a preliminary work supported by computational fluid dynamics, a frontal wing DRS can increase the mass flow rate in approximately 65% at an average velocity of 12 meters per second, which allows the team to use a smaller and lightweight radiator. The challenge was to design a lightweight and reliable automatic system, since it cannot fail nor take away the driver’s attention. To avoid these problems, an electric circuit was developed to control the actuators using the throttle position sensor data and lateral acceleration from an accelerometer.
机译:式1中常用的阻力减压系统具有减少在车辆翼型中起作用的拖曳力的任务,其速度显着增加。涉及式SAE竞争时,由于速度低于F1,因此尽管有名称,但DRS的目的很容易成为冷却。本文提出了一种施加到额翼的阻力减压系统的发展,其主要目的是通过散热器提高空气的质量流量。基于计算流体动力学支持的初步作品,正面翼DRS可以在每秒12米的平均速度下增加大约65%的质量流量,这使得团队使用较小和轻质的散热器。挑战是设计轻量级且可靠的自动系统,因为它不能失败,也不会带走驾驶员的注意力。为了避免这些问题,开发了一种电路以控制致动器,使用节流阀位置传感器数据和来自加速度计的横向加速度。

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