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NUMERICAL AND EXPERIMENTAL STUDY OF AN FSAE INTAKE MANIFOLD

机译:FSAE进气歧管的数值和实验研究

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Formula SAE (FSAE) is an international student engineering competition that allows students to design, manufacture and race a formula-style race car to compete with other universities. This season the Purdue University Northwest (PNW) Formula SAE Team required a means of evaluating potential performance characteristics and optimizing future design concepts for the intake manifold system prior to manufacturing, to reduce the overall time and cost. The air intake system is a critical powertrain system component that requires numerical study and experimentation to validate any meaningful design. Without simulation and testing, an efficient intake may only be designed by chance. This project focused on replicating the characteristic flow behavior witnessed in the 2017-2018 PNW FSAE intake system using the computational fluid dynamics (CFD) software named STAR-CCM+. A 3D printed test model was manufactured and tested on a flow bench to gather boundary conditions and pressure data from multiple locations within the intake manifold. The physical testing results of the 2017-2018 intake system were with the CFD results in order to validate the simulation models.
机译:Formula SAE(FSAE)是一项国际学生工程竞赛,该竞赛使学生能够设计,制造和竞赛公式式赛车来与其他大学竞争。本季度,普渡大学西北(PNW)公式SAE团队需要一种方法,在制造之前评估进气歧管系统的潜在性能特征并优化未来的设计概念,以减少总体时间和成本。进气系统是动力总成系统的重要组成部分,需要进行数值研究和实验以验证任何有意义的设计。如果没有模拟和测试,那么有效的进气口可能只是偶然设计的。该项目致力于使用名为STAR-CCM +的计算流体动力学(CFD)软件复制2017-2018 PNW FSAE进气系统中见证的特征流动行为。制造了3D打印测试模型,并在工作台上进行了测试,以收集进气歧管内多个位置的边界条件和压力数据。为了验证仿真模型,2017-2018年进气系统的物理测试结果与CFD结果一致。

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