首页> 外文会议>ASME international mechanical engineering congress and exposition >AN EVALUATION OF THE EFFECTS OF TEAM PROJECTS AND AUGMENTED REALITY ON STUDENT LEARNING IN SUSTAINABLE BUILDING SCIENCE
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AN EVALUATION OF THE EFFECTS OF TEAM PROJECTS AND AUGMENTED REALITY ON STUDENT LEARNING IN SUSTAINABLE BUILDING SCIENCE

机译:团队项目和增强现实对可持续建筑科学学生学习的影响评价。

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Sustainable building design and construction involves complex systems that require multidisciplinary teams from engineering, construction, and architecture, to design and analyze the systems at every stage of the process during the building's life cycle. However, students who are the future work force are often trained in different disciplines across different colleges. When these students are grouped together to work on the building design and analysis, learning in a multidisciplinary environment could be both beneficial and challenging due to the difference in their background. In this paper, we report our experience and analysis of data examining the learning effectiveness of the undergraduate students from three cross-college departments in architecture, construction, and engineering. Using pre- and post-semester tests on selected building science problems, we have investigated how the student's understanding of building science had changed through team projects. Particularly, for mechanical engineering students in the design of thermal/fluid systems classes, we analyzed whether a cross-college multidisciplinary team could do better as compared to a disciplinary-specific team within the same class. We also examined the potential effects of emerging technology, augmented reality, on student learning in the same team environment. It was interesting to find that students' learning in discipline-specific teams can be improved as in the multidisciplinary teams, due to the challenges in the complexity of the projects.
机译:可持续的建筑设计和施工涉及复杂的系统,这些复杂的系统需要来自工程,建筑和建筑领域的多学科团队,才能在建筑生命周期的每个阶段设计和分析系统。但是,作为未来劳动力的学生通常会在不同学院接受不同学科的培训。当这些学生分组在一起进行建筑设计和分析时,由于背景的差异,在多学科环境中学习既有益又具有挑战性。在本文中,我们报告了我们的经验和数据分析,这些数据检验了建筑,建筑和工程三个交叉学院本科生的学习效果。使用学期前和学期后针对所选建筑科学问题的测试,我们调查了学生如何通过团队项目改变了对建筑科学的理解。特别是,对于在热/流体系统课程设计中的机械工程专业的学生,​​我们分析了与同一课程中的特定学科团队相比,跨学院的多学科团队是否可以做得更好。我们还研究了在同一团队环境中新兴技术,增强现实对学生学习的潜在影响。有趣的是,由于项目复杂性方面的挑战,与多学科团队一样,学生可以在特定学科的团队中学习得到改善。

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