首页> 外文会议>American Society For Engineering Education Annual Conference and Exposition >CONNECTING EXPERIMENT, THEORY, AND PHYSICAL INTUITION IN HEAT TRANSFER WITH A LOW-COST SOLAR WATER HEATER DESIGN PROJECT
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CONNECTING EXPERIMENT, THEORY, AND PHYSICAL INTUITION IN HEAT TRANSFER WITH A LOW-COST SOLAR WATER HEATER DESIGN PROJECT

机译:用低成本太阳能热水器设计项目在传热中连接实验,理论和物理直觉

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Engineering students often struggle with developing physical, tangible understandings of the theories they learn in the classroom. Additionally, they often struggle when faced with messy, non-idealized, real-world systems as opposed to the idealized geometries and assemblies frequently encountered within classrooms and textbooks. As such, they also rarely have the opportunity to learn how experimental design and theoretical modeling work together to understand practical systems. To address these shortcomings, a low-cost solar water heater design project was developed and integrated concurrently between a mechanical engineering heat transfer course and a thermal systems laboratory course. The low-cost constraint reinforced physical understanding of heat transfer concepts and ensured messy, non-ideal designs to which theoretical modeling could not be neatly applied. A heat transfer concept inventory to assess student learning showed minimal gains in student understanding while a self-report attitude survey administered to the students demonstrated that they perceived the design project to be a valuable and enjoyable learning experience. Students failed, however, to understand the complementary nature of experimentation and theoretical modeling. Improved coordination between the two classes was needed to fully realize this benefit, and will be implemented in the future.
机译:工程专业的学生往往与发展中国家,他们在课堂上学习理论物理的,有形的理解奋斗。此外,当面对凌乱他们经常纠缠,非理想化,而不是理想化的几何形状和教室和课本中经常遇到的组件现实世界的系统。因此,他们也很少有学习实验设计及理论模型如何协同工作,以了解实际系统的机会。为了克服这些缺点,低成本的太阳能热水器设计项目开发和工程机械的传热过程和热系统实验室课程之间的整合的同时。低成本约束强化传热概念和保证的凌乱,不理想的设计,这不能被整齐地应用理论模型物理的理解。传热概念库存来评估学生的学习表现出学生的理解最小的收益,同时给予学生自我报告的态度调查显示,他们认为设计项目是一个有价值的和愉快的学习经验。但是学生没,了解实验和理论模型的互补性。需要两个类之间更好的协调,充分认识到这一点的好处,并会在将来实现。

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