“双碳”目标是我国应对气候变化、推动经济社会可持续发展的重大战略决策,对能源动力类专业人才培养提出了新的更高要求。本文分析了“双碳”背景下能源动力类专业实验教学面临的新形势新挑战,提出了实验教学体系优化的总体思路和基本...“双碳”目标是我国应对气候变化、推动经济社会可持续发展的重大战略决策,对能源动力类专业人才培养提出了新的更高要求。本文分析了“双碳”背景下能源动力类专业实验教学面临的新形势新挑战,提出了实验教学体系优化的总体思路和基本原则。在此基础上,从实验课程体系、教学模式、资源建设等方面,探讨了实验教学体系重构的具体路径。同时,就加强组织保障、健全制度体系、强化队伍建设、促进多方协同、加强实施评估等方面提出了相关政策建议。研究指出,在“双碳”目标引领下深化能源动力类专业实验教学改革,加快建设一流实验教学体系,对于提升专业人才培养质量,服务国家“双碳”战略大局和能源革命、产业变革具有重要意义。 The “Dual Carbon” goals are China’s major strategic decisions to address climate change and promote sustainable economic and social development, which have put forward new and higher requirements for talent cultivation in energy and power-related majors. This article analyzes the new situations and challenges faced by experimental teaching in energy and power majors under the “dual carbon” background and proposes an overall approach and basic principles for optimizing the experimental teaching system. On this basis, the article explores specific paths for reconstructing the experimental teaching system in terms of the experimental curriculum system, teaching models, and resource construction. Meanwhile, relevant policy suggestions are put forward in terms of strengthening organizational support, improving the institutional system, enhancing team building, promoting multi-party collaboration, and strengthening implementation assessment. The research points out that deepening the reform of experimental teaching in energy and power majors under the guidance of the “dual carbon” goals and accelerating the construction of a first-class experimental teaching system are of great significance for improving the quality of professional talent cultivation and serving the overall national strategy of “dual carbon” and the energy revolution and industrial transformation.展开更多
随着全球制造业向智能化、数字化、网络化方向的迅速发展,智能制造成为推动工业升级和技术创新的核心领域。本文结合多篇关于智能制造专业实验教学的研究成果,系统探讨了智能制造专业实验教学体系的构建与实施策略。通过强调学生综合素...随着全球制造业向智能化、数字化、网络化方向的迅速发展,智能制造成为推动工业升级和技术创新的核心领域。本文结合多篇关于智能制造专业实验教学的研究成果,系统探讨了智能制造专业实验教学体系的构建与实施策略。通过强调学生综合素质的协调发展、注重培养学生的社会责任感、安全环保意识和职业道德,构建科学合理的实验教学内容和课程体系,优化实验教学环境和资源,建立科学的评价和反馈机制,并提供必要的保障措施,文章提出了切实可行的实验教学策略和优化措施。研究结果表明,这些策略和措施对于培养具备创新能力、社会责任感、安全环保意识和职业道德的高素质智能制造技术人才具有重要意义,为智能制造专业的人才培养提供了有力的理论支持和实践指导。With the rapid development of global manufacturing towards intelligence, digitalization, and networking, intelligent manufacturing has become the core field for promoting industrial upgrading and technological innovation. This paper systematically explores the construction and implementation strategies of the experimental teaching system for intelligent manufacturing majors by combining multiple research results on the experimental teaching of intelligent manufacturing. Emphasizing the coordinated development of students’ comprehensive qualities, focusing on cultivating students’ social responsibility, safety and environmental awareness, and professional ethics, constructing a scientific and reasonable experimental teaching content and curriculum system, optimizing the experimental teaching environment and resources, establishing a scientific evaluation and feedback mechanism, and providing necessary support measures, this paper proposes feasible experimental teaching strategies and optimization measures. The results show that these strategies and measures are of great significance for cultivating high-quality intelligent manufacturing technology talents with innovative ability, social responsibility, safety and environmental awareness, and professional ethics, providing strong theoretical support and practical guidance for the cultivation of talents in intelligent manufacturing majors.展开更多
文摘“双碳”目标是我国应对气候变化、推动经济社会可持续发展的重大战略决策,对能源动力类专业人才培养提出了新的更高要求。本文分析了“双碳”背景下能源动力类专业实验教学面临的新形势新挑战,提出了实验教学体系优化的总体思路和基本原则。在此基础上,从实验课程体系、教学模式、资源建设等方面,探讨了实验教学体系重构的具体路径。同时,就加强组织保障、健全制度体系、强化队伍建设、促进多方协同、加强实施评估等方面提出了相关政策建议。研究指出,在“双碳”目标引领下深化能源动力类专业实验教学改革,加快建设一流实验教学体系,对于提升专业人才培养质量,服务国家“双碳”战略大局和能源革命、产业变革具有重要意义。 The “Dual Carbon” goals are China’s major strategic decisions to address climate change and promote sustainable economic and social development, which have put forward new and higher requirements for talent cultivation in energy and power-related majors. This article analyzes the new situations and challenges faced by experimental teaching in energy and power majors under the “dual carbon” background and proposes an overall approach and basic principles for optimizing the experimental teaching system. On this basis, the article explores specific paths for reconstructing the experimental teaching system in terms of the experimental curriculum system, teaching models, and resource construction. Meanwhile, relevant policy suggestions are put forward in terms of strengthening organizational support, improving the institutional system, enhancing team building, promoting multi-party collaboration, and strengthening implementation assessment. The research points out that deepening the reform of experimental teaching in energy and power majors under the guidance of the “dual carbon” goals and accelerating the construction of a first-class experimental teaching system are of great significance for improving the quality of professional talent cultivation and serving the overall national strategy of “dual carbon” and the energy revolution and industrial transformation.
文摘随着全球制造业向智能化、数字化、网络化方向的迅速发展,智能制造成为推动工业升级和技术创新的核心领域。本文结合多篇关于智能制造专业实验教学的研究成果,系统探讨了智能制造专业实验教学体系的构建与实施策略。通过强调学生综合素质的协调发展、注重培养学生的社会责任感、安全环保意识和职业道德,构建科学合理的实验教学内容和课程体系,优化实验教学环境和资源,建立科学的评价和反馈机制,并提供必要的保障措施,文章提出了切实可行的实验教学策略和优化措施。研究结果表明,这些策略和措施对于培养具备创新能力、社会责任感、安全环保意识和职业道德的高素质智能制造技术人才具有重要意义,为智能制造专业的人才培养提供了有力的理论支持和实践指导。With the rapid development of global manufacturing towards intelligence, digitalization, and networking, intelligent manufacturing has become the core field for promoting industrial upgrading and technological innovation. This paper systematically explores the construction and implementation strategies of the experimental teaching system for intelligent manufacturing majors by combining multiple research results on the experimental teaching of intelligent manufacturing. Emphasizing the coordinated development of students’ comprehensive qualities, focusing on cultivating students’ social responsibility, safety and environmental awareness, and professional ethics, constructing a scientific and reasonable experimental teaching content and curriculum system, optimizing the experimental teaching environment and resources, establishing a scientific evaluation and feedback mechanism, and providing necessary support measures, this paper proposes feasible experimental teaching strategies and optimization measures. The results show that these strategies and measures are of great significance for cultivating high-quality intelligent manufacturing technology talents with innovative ability, social responsibility, safety and environmental awareness, and professional ethics, providing strong theoretical support and practical guidance for the cultivation of talents in intelligent manufacturing majors.