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F1 IN SCHOOLS Competition to Promote STEM: Aerodynamic Investigation of Miniature F1 IN SCHOOLS Car

机译:F1 IN SCHOOLS竞赛,以推广STEM:微型F1 IN SCHOOLS汽车的空气动力学研究

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The F1 IN SCHOOLS competition was established to attract students to science, technology, engineering and mathematics (STEM) as early as in secondary school. The application of aerodynamics is one of the important aspects to be studied. There are two elements that must be considered in the analysis that can affect the aerodynamic performance of the car in terms of the maximum velocity, namely, the drag coefficient and the downforce coefficient. Since the velocity of the F1 IN SCHOOLS car is mainly related to its aerodynamic design, therefore, the design of the diffuser and side pot components of the F1 IN SCHOOLS car must be considered. The objective of this paper was to study the effect of different designs of the side pot and diffuser in order to produce a low drag coefficient while maintaining an adequate downforce coefficient. The study was conducted using the STAR CCM+ software to run the simulations. The aim of this study was to produce an F1 IN SCHOOLS car that meets two important criteria, namely, a low drag coefficient and an adequate downforce coefficient.
机译:F1 IN SCHOOLS竞赛的设立是为了早在中学时就吸引学生学习科学,技术,工程和数学(STEM)。空气动力学的应用是要研究的重要方面之一。在分析中必须考虑两个因素,这些因素会影响汽车的空气动力学性能,即最大速度,即阻力系数和下压力系数。由于F1 IN SCHOOLS赛车的速度主要与其空气动力学设计有关,因此,必须考虑F1 IN SCHOOLS赛车的扩散器和侧锅组件的设计。本文的目的是研究侧锅和扩散器的不同设计的影响,以在保持足够的下压力系数的同时产生低阻力系数。该研究是使用STAR CCM +软件进行的,以进行模拟。这项研究的目的是生产一种满足两个重要标准的F1 IN SCHOOLS汽车,即低阻力系数和足够的下压力系数。

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