飞轮储能系统的项目式工程 实践教学模式研究

A Project-Based Engineering Practice Teaching Model: A Case Study of a Flywheel Energy Storage System

  • 摘要: 为应对不同专业对于培养学生工程实践能力的需求,传统工程实践类课程亟需改革,寻求体现学生专业特色、融合产品设计与制造的新型教学方案。面向电机专业学生的金工实习,选择与专业紧密联系的飞轮储能系统作为教学载体,将设计建模、加工制造、组装调试等环节融入教学过程,并采用项目式学习方法,引导学生参与整个项目的设计、实施和评价。通过课程的学习,学生不仅掌握了飞轮储能技术相关知识,工程实践能力、创新能力和团队合作能力也得到有效提升。该教学模式的实施过程、教学方法以及取得的成效,为其他高校工程实践教学模式改革提供了有益的思路和参考。

     

    Abstract: To meet the demand from various academic majors to cultivate students’ practical engineering skills, traditional engineering practice courses are in urgent need of reform. This involves exploring new teaching approaches that reflect students’ professional characteristics and integrate product design with manufacturing. In the “Manufacturing Practice” course for electrical engineering students, a flywheel energy storage system—a topic highly relevant to their major—was selected as the teaching platform for the first time. This course integrates key stages such as design and modeling, machining, assembly, and debugging into its curriculum. Furthermore, it employs project-based learning approaches, engaging students in the entire project lifecycle, from design and implementation to final evaluation.Through this course, students not only acquire knowledge of flywheel energy storage technology but also enhance their engineering practice, innovation, and teamwork abilities. The implementation process, teaching methods, and outcomes of this model offer valuable insights and a practical reference for other universities seeking to reform their own engineering practice education.

     

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