The Department of Engineering Thermophysics has made significant achievements in education and in scientific research during the past 60 years. The Ph.D. program was established since
Institute of Engineering Thermophysics; has attached tremendous attention in the field of photo-isomerization energy storage due to its advantages of absorbing light in ultraviolet-visible
In this paper, influence of void ratio on phase change of thermal storage unit for heat pipe receiver under microgravity is numerically simulated. Accordingly, mathematical
(2018) Journal of Engineering Thermophysics, volume 39, issue 3, pp. 567 - 573 (Article) Abstract. Keywords: Cold thermal energy storage, Latent heat, Phase change materials,
On July 16, the Chinese Academy of Sciences Institute of Engineering Thermophysics achieved a new breakthrough in compressed air energy storage research and development with the successful integration test
2023 Full-time Master Program for Power Engineering and Engineering Thermophysics 一、基本信息 Basic Information 院系名称 School 中英国际低碳学院 China-UK Low Carbon College
A 300MWh compressed air energy storage system capacity has been connected to the grid in Jiangsu, China, while a compressed air storage startup in the country has raised nearly US$50 million in a funding round.
Institute of Engineering Thermophysics, Chinese Academy of Sciences, P.O. BOX 2706, Beijing, 100190 China. Search for more papers by this author. Yujie Xu, Yujie Xu. Meanwhile, with
Temperature Regulation Model and Experimental Study of Compressed Air Energy Storage Cavern Heat Exchange System Institute of Engineering Thermophysics, Chinese Academy of Sciences, Beijing 100190,
In this paper, we review a class of promising bulk energy storage technologies based on thermo-mechanical principles, which includes: compressed-air energy storage, liquid-air energy storage and pumped-thermal electricity storage.
The thermodynamic principles upon which these thermo-mechanical energy storage (TMES) technologies are based are discussed and a synopsis of recent progress in their development is presented, assessing their ability to provide reliable and cost-effective solutions.
In the three cases studied, the pumped storage has the best thermo-economy; the compressed air energy storage is the second, and the flywheel energy storage is the third. The main reason is that the pumped storage has the least non-exergy cost, and flywheel has the most.
The results show that the EEBRs of pumped storage and compressed air energy storage under peak load shaving condition and flywheel energy storage under frequency modulation service condition are all larger than zero, which means they are all thermo-economically feasible.
This pioneering achievement is independently developed by the Institute of Engineering Thermophysics of Chinese Academy of Sciences (IET) and Zhong-Chu-Guo-Neng Co. Ltd.
Journal of Engineering Thermophysics is a science and technology academic journal. It mainly publishes original papers of both theoretical and expe... The Institute of Engineering Thermophysics (IET) originated from the Power Laboratory of the Chinese Academy of Sciences (CAS) founded by Academician WU Chung-hua in 1956.
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