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Internet of Things: Remote Integrated Laboratory Activities in Green Energy Manufacturing and Energy Management Learning Modules: Heat Exchangers Efficiency, the Design Perspective

机译:物联网:绿色能源制造和能源管理学习模块的远程集成实验室活动:换热器效率,设计视角

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While the world moves fast towards implementing strategies, policies and ultimately technologies that helps alleviate the climate change though sustainable energy systems, the educational programs and their components should follow suit, adapting to the new challenges. During the past decade and beyond, the traditional lecture based courses in "thermal-fluid" area were subjected to various improvements and changes by educators in their effort to introduce industry-like experiential activities in order to enhance and complement the lectured material and attempt to improve students' understanding. However, due to increased cost of the equipment paired with limited physical space, these endeavors seem to fade. As a result of the funded educational research though a DOED grant, we developed remote-operated experiential activities aimed to enhance the theoretical approach of the traditional Thermal-fluid area courses. These activities are manufacturing industry-inspired and oriented towards green and sustainable manufacturing, including integration of renewable energy sources into the manufacturing industry. The remote-operated platforms may be used to deliver knowledge to students in different locations, including disadvantaged communities of students that may otherwise not have access to this type of education. The modules are described in detail, including student assessment, student feedback as pertinent to student learning outcomes.
机译:虽然世界迅速发展策略,政策和最终技术,帮助减轻可持续能源系统,教育方案及其组件应遵循适应新的挑战,帮助缓解气候变化。在过去的十年和以后,在“热流体”区域的基于传统的基于演讲的课程受到教育工作者的各种改进和变化,以努力引入类似的业界的体验活动,以提高和补充讲座材料并试图提高学生的理解。然而,由于设备的增加成本与物理空间有限,这些努力似乎褪色。由于资助的教育研究虽然虽然被授予了授予了授予的授权,我们开发了遥远的经验活动,旨在增强传统的热流体面积课程的理论方法。这些活动是制造业的制造业启发和面向绿色和可持续制造,包括将可再生能源的整合到制造业。远程操作的平台可用于向不同地点的学生提供知识,包括可能无法访问这种教育的学生的弱势社区。这些模块详细描述了,包括学生评估,学生反馈与学生学习结果相关。

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