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New Energy Science and Engineering

New Energy Science and Engineering

 

Cultivation Characteristics

The major is oriented around the national and regional needs for the development of the new energy industry. Upholding the concept of green and low-carbon development, it emphasizes the interdisciplinary integration of "energy conversion principlesequipment design technologysafety operation management". This major adopts a practice-oriented talent cultivation model focused on "solid theoretical foundation, strong engineering capabilities, excellent innovative awareness, and comprehensive professional literacy". The goal is to nurture high-quality applied engineering and technical talents who have a firm grasp of the principles of new energy conversion and utilization, professional knowledge of new energy device design and safe operation, as well as capabilities in engineering practice, innovation, lifelong learning, teamwork and communication. These talents will possess a strong sense of social responsibility and commitment to sustainable development, adapt to the rapid development of hydrogen energy and other new energy fields, be competent for tasks such as planning and design, operation management, safety assessment, and emergency supply guarantee in new energy development and utilization projects, and engage in teaching, scientific research, technological development, low-carbon energy-saving transformation, engineering management, operation planning, municipal energy operation safety and emergency response in the field of new energy science and engineering.

 

Faculty & Staff



 

Teaching Resources

Relying on the authorized master's degree program in energy and power engineering and three provincial-ministerial key institutions: the Beijing Key Laboratory of Key Technologies and Equipment for Deepwater Oil and Gas Pipelines, the Zhongguancun Institute of Industrial Technology for Energy Engineering and Intelligent Equipment, the Beijing Science and Technology Innovation Platform for Intelligent Manufacturing Technology and Equipment, as well as two university-level research hubs: the Institute of Energy Efficient Utilization and Clean Energy Engineering Application and the Hydrogen Energy Research Center, the program is bolstered by robust industry-academia collaboration platforms. These platforms consist of the national-level engineering practice education center co-built with Yanshan Petrochemical and the Clean Energy Industry College practice bases jointly established with over 20 enterprises and institutions such as Aerospace Hydrogen Energy Technology Co., Ltd., Aerospace Cangzhou Energy and Environmental Protection Innovation Research Institute, and Beijing Hadelis Technology Co., Ltd. It has pioneered a tiered talent development system integrating university, Beijing municipal, and national-level discipline competitions and undergraduate research training programs, achieving 100% student participation. Through the synergy of research-driven teaching, practice-oriented innovation, and industry-education integration, the program cultivates high-caliber professionals well-versed in energy and power engineering.

 

Core Curriculum

Engineering Fluid Mechanics, Heat Transfer, Engineering Thermodynamics, Hydrogen Storage Processes and Equipment Design, Design and Management of Hydrogen Fueling Station, Transportation Technology and Management of Pure Hydrogen and Hydrogen - mixed Natural Gas, Engineering Drawing, Engineering Mechanics, Pumps and Compressors, Principles of Automatic Control, Hydrogen Safety and Emergency Management, etc.