在航空航天反应发动机课程中整合基于挑战的学习和设计思维

IF 1.1 Q3 EDUCATION, SCIENTIFIC DISCIPLINES
J. L. Díaz Palencia
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引用次数: 0

摘要

本研究介绍了一种航空航天工程教育方法,该方法将基于挑战的学习(CBL)和设计思维整合到反应发动机课程中。论文介绍了这种方法如何满足航空航天领域不断变化的需求,特别是对可持续推进系统的需求。论文从文献综述入手,进行了系统性分析,建立了对挑战性学习和设计思维的一些基本认识,同时强调了它们在培养工程专业学生解决问题和批判性思维能力方面的重要性。论文的主体部分探讨了这些方法在航空航天课程中的实际应用。它详细介绍了一系列旨在让学生对反应发动机中的可持续理念有基本了解的课程。这些课程鼓励学生进行批判性思考和合作解决问题,与航空航天推进领域的现实环境问题保持一致。此外,我们还通过半结构式访谈技术,介绍了学生对课堂教学的反馈,以评估教学方法的有效性。从访谈中分析得出的反馈表明,学生对 CBL 和设计思维的接受度很高。学生们对课堂的互动性和对解决实际问题的重视表示赞赏。不过,他们也指出了今后需要改进的挑战,如平衡理论和实践方面、节奏和提供明确的指导等。本研究强调,需要根据学生的定期反馈,不断调整和迭代教学方法,以确保其在培养学生应对航空航天领域未来挑战方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating challenge-based learning and design thinking in a course of reaction engines for aerospace
This study presents an approach to aerospace engineering education based on the integration of challenge-based learning (CBL) and design thinking in a course on reaction engines. The paper describes how this approach addresses the evolving demands of the aerospace sector, particularly the need for sustainable propulsion systems. It provides a sistematic analysis, starting with a literature review that establishes some foundational understanding of CBL and design thinking while highlighting their importance in fostering problem-solving and critical thinking skills among engineering students. The main body of the paper explores the practical application of these methodologies in an aerospace course. It details a series of sessions designed to provide students with basic understanding of sustainable ideas in reaction engines. These sessions encourage students to engage in critical thinking and collaborative problem-solving, aligning with real-world environmental concerns in aerospace propulsion. In addition, we present the students` feedback concerning the classroom sessions based on a semi-structured interview technique to assess the effectiveness of the teaching approach. The feedback, analyzed from these interviews, indicates a positive reception of CBL and design thinking. Students appreciated the interactive nature of the sessions and the emphasis on real-world problem-solving. However, challenges such as balancing theoretical and practical aspects, pacing, and providing clear guidelines were noted for future improvement. The study emphasizes the need for ongoing adaptation and iteration of teaching methodologies, informed by regular student feedback, to ensure their effectiveness in preparing students for future challenges in the aerospace sector.
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来源期刊
CiteScore
3.00
自引率
28.60%
发文量
13
期刊介绍: The International Journal of Mechanical Engineering Education is aimed at teachers and trainers of mechanical engineering students in higher education and focuses on the discussion of the principles and practices of training professional, technical and mechanical engineers and those in related fields. It encourages articles about new experimental methods, and laboratory techniques, and includes book reviews and highlights of recent articles in this field.
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