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A Computational and Experimental Compressor Design Project for Japanese and British High-School Students

机译:日本和英国高中学生的计算和实验压缩机设计项目

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摘要

This paper describes an innovative, three-day, turbomachinery research project for Japanese and British high-school students. The project is structured using modern teaching theories which encourage student curiosity and creativity. The experience develops team-work and communication, and helps to break-down cultural and linguistic barriers between students from different countries and backgrounds. The approach provides a framework for other hands-on research projects which aim to inspire young students to undertake a career in engineering. The project is part of the Clifton Scientific Trust's annual UK-Japan Young Scientist Workshop Programme. The work focuses on compressor design for jet engines and gas turbines. It includes lectures introducing students to turbomachinery concepts, a computational design study of a compressor blade section, experimental tests with a low-speed cascade and tutorials in data analysis and aerodynamic theory. The project also makes use of 3D printing technology, so that students go through the full engineering design process, from theory, through design, to practical experimental testing. Alongside the academic aims, students learn what it is like to study engineering at university, discover how to work effectively in a multinational team, and experience a real engineering problem. Despite a lack of background in fluid dynamics and the limited time available, the lab work and end of project presentation show how far young students can be stretched when they are motivated by an interesting problem.
机译:本文介绍了一项针对日本和英国高中学生的创新型,为期三天的涡轮机械研究项目。该项目采用现代教学理论来构建,以鼓励学生的好奇心和创造力。经验促进了团队合作和沟通,并有助于打破来自不同国家和背景的学生之间的文化和语言障碍。该方法为其他动手研究项目提供了框架,这些项目旨在激发年轻学生从事工程职业。该项目是克利夫顿科学信托(Clifton Scientific Trust)年度英国-日本青年科学家研讨会计划的一部分。这项工作专注于喷气发动机和燃气轮机的压缩机设计。它包括向学生介绍涡轮机械概念的讲座,对压缩机叶片截面的计算设计研究,低速叶栅的实验测试以及数据分析和空气动力学理论的教程。该项目还利用3D打印技术,使学生从理论,设计到实际实验测试,都经过完整的工程设计过程。除了学术目标外,学生还将学习在大学学习工程学的感觉,发现如何在跨国团队中有效工作,并体验实际的工程问题。尽管缺乏流体动力学方面的背景知识并且可用的时间有限,但是实验室工作和项目演示的结尾表明,当年轻的学生受到一个有趣的问题的激励时,他们可以伸展多远。

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