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Optimization of the Performance of a Formula SAE Engine by Means of a Wastegate Valve Electronically Actuated

机译:电动废气旁通阀可优化Formula SAE发动机的性能

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摘要

The engine and vehicle design in Formula SAE competition has to accomplish a strict regulation. In order to limit the maximum power, an air restrictor of 20mm of diameter is imposed in the intake line. To overcome the limitations caused by the restrictor, Firenze Race Team equipped its one-cylinder engine with a turbocharger, which is conventionally provided with a wastegate (WG) valve to limit the maximum boost pressure and avoid knocking phenomena. Typically, the WG valve is controlled by a pneumatic actuator, which opens the valve according to a defined and constant maximum boost pressure downstream the compressor in the whole engine operating range. Therefore, the boost pressure at high engine speed, in which knocking problems are less intense and the volumetric efficiency is lower, is limited by the threshold value defined at medium-low engine speeds, i.e. the pneumatic WG limits the maximum power that the engine can supply. In this study, the implementation of an electronic control system for the WG valve is described together with a dedicated control strategy aimed at providing the desired boost pressure at full load for each engine speed, in order to get the maximum power avoiding knocking phenomena. The electronic WG provided higher power values and a more extended torque curve in comparison to the conventional pneumatic one.
机译:Formula SAE竞赛中的发动机和车辆设计必须完成严格的规定。为了限制最大功率,在进气管路中安装了直径为20mm的空气限制器。为了克服限流器带来的限制,佛罗伦萨赛车队为其单缸发动机配备了涡轮增压器,该涡轮增压器通常配备有废气旁通阀(WG),以限制最大增压压力并避免爆震现象。典型地,WG阀由气动致动器控制,该气动致动器根据在整个发动机工作范围内的压缩机下游的限定且恒定的最大增压来打开该阀。因此,爆震问题较少且容积效率较低的高发动机转速下的增压压力受到中低发动机转速下定义的阈值的限制,即气动WG限制了发动机可以达到的最大功率。供应。在这项研究中,描述了用于WG阀的电子控制系统的实现以及专用控制策略,该策略旨在在每个发动机转速的满负荷下提供所需的增压压力,从而获得最大的功率,避免爆震现象。与传统的气动WG相比,电子WG提供了更高的功率值和更大的扭矩曲线。

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