太阳能空气加热器与热储存

Q4 Engineering 工程设计学报 Pub Date : 2013-12-17 DOI:10.1155/2013/190279
A. Saxena, Varun Goel
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引用次数: 56

摘要

太阳能可以转化为不同形式的能量,可以转化为热能,也可以转化为电能。太阳能通过光伏组件直接转化为电能,而太阳能集热器将太阳能转化为热能。太阳能集热器的工作原理是吸收太阳的直接辐射并将其转化为热能,热能可以以显热或潜热或显热和潜热相结合的形式储存起来。对太阳能空气加热器常用的各种蓄热方式进行了理论研究。在研究过程中发现,岩床储层为低热储层,相变材料为高热储层。除此之外,一些其他的储热材料已经被研究和讨论,以降低到更高的评级,专门为太阳能加热器的热性能。
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Solar Air Heaters with Thermal Heat Storages
Solar energy can be converted into different forms of energy, either to thermal energy or to electrical energy. Solar energy is converted directly into electrical power by photovoltaic modules, while solar collector converts solar energy into thermal energy. Solar collector works by absorbing the direct solar radiation and converting it into thermal energy, which can be stored in the form of sensible heat or latent heat or a combination of sensible and latent heats. A theoretical study has been carried out to rate the various thermal energy storage commonly used in solar air heaters. During the investigations rock bed storages have been found to be low type thermal heat storage, while phase change materials have been found to be high heat thermal storages. Besides this, a few other heat storing materials have been studied and discussed for lower to higher ratings in terms of thermal performance purposely for solar heaters.
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来源期刊
工程设计学报
工程设计学报 Engineering-Engineering (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
2447
审稿时长
14 weeks
期刊介绍: Chinese Journal of Engineering Design is a reputable journal published by Zhejiang University Press Co., Ltd. It was founded in December, 1994 as the first internationally cooperative journal in the area of engineering design research. Administrated by the Ministry of Education of China, it is sponsored by both Zhejiang University and Chinese Society of Mechanical Engineering. Zhejiang University Press Co., Ltd. is fully responsible for its bimonthly domestic and oversea publication. Its page is in A4 size. This journal is devoted to reporting most up-to-date achievements of engineering design researches and therefore, to promote the communications of academic researches and their applications to industry. Achievments of great creativity and practicablity are extraordinarily desirable. Aiming at supplying designers, developers and researchers of diversified technical artifacts with valuable references, its content covers all aspects of design theory and methodology, as well as its enabling environment, for instance, creative design, concurrent design, conceptual design, intelligent design, web-based design, reverse engineering design, industrial design, design optimization, tribology, design by biological analogy, virtual reality in design, structural analysis and design, design knowledge representation, design knowledge management, design decision-making systems, etc.
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