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热化学蓄热系统研究进展
Alternative TitleResearch Progress on Thermochemical Heat Storage System
王智辉1; 漥田光宏; 杨希贤1; 刘学成1; 何兆红1; 大坂侑吾; 黄宏宇1
2015
Source Publication新能源进展
Issue4Pages:289-298
AbstractThermochemical heat storage technology can store and discharge heat energy by reversible chemical reactions. It shows higher heat storage density and better long-term preservation ability than sensible heat storage and phase change heat storage, so that h
Other Abstract热化学蓄热通过可逆化学反应来储存和释放热量,其蓄热密度高于显热蓄热和相变蓄热,且能够实现能量的长期储存,在未来能源利用领域具有广阔前景。根据热化学蓄热系统的结构,可将其分为开式系统和闭式系统。本文针对开式系统和闭式系统,对蓄热材料、环境气氛条件、反应过程优化以及反应器设计等影响系统性能的重要因素进行概述与讨论,为热化学蓄热系统的发展和实际应用提供参考。
Keyword热化学蓄热 开式系统 闭式系统 系统性能
Funding Organization中国科学院国际人才计划项目(2015VTC002);广东省自然科学基金项目(S2013010014709)
Document Type期刊论文
Identifierhttp://ir.giec.ac.cn/handle/344007/16255
Collection中国科学院广州能源研究所
集成技术研发中心
Affiliation1.中国科学院广州能源研究所,广州510640
2.日本名古屋大学,名古屋4648603
3.日本金泽大学,金泽9201192
Recommended Citation
GB/T 7714
王智辉,漥田光宏,杨希贤,等. 热化学蓄热系统研究进展[J]. 新能源进展,2015(4):289-298.
APA 王智辉.,漥田光宏.,杨希贤.,刘学成.,何兆红.,...&黄宏宇.(2015).热化学蓄热系统研究进展.新能源进展(4),289-298.
MLA 王智辉,et al."热化学蓄热系统研究进展".新能源进展 .4(2015):289-298.
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