光热治疗
光伏系统
分类
太阳能
航空航天
纳米技术
相变材料
热能储存
计算机科学
材料科学
系统工程
领域(数学)
储能
相变
工程物理
环境科学
工艺工程
航空航天工程
工程类
电气工程
物理
功率(物理)
数学
量子力学
纯数学
热力学
程序设计语言
作者
Jiyan Li,Yong Long,Xiaoyin Cao,Hanxue Sun,Rui Jiao,Zhaoqi Zhu,Weidong Liang,An Li
标识
DOI:10.1016/j.cis.2024.103118
摘要
Developing high-efficiency solar photothermal conversion and storage (SPCS) technology is significant in solving the imbalance between the supply and demand of solar energy utilization in time and space. Aiming at the current research status in the field of SPCS, this review thoroughly examines the phase change materials and substrates in SPCS systems. It elucidates the design principles and methods of SPCS integrated composites. Comparatively, it analyzes the parameters of various types of SPCS composites in terms of photothermal conversion, thermal conductivity, energy density, and cycling stability. Additionally, the review discusses the trade-offs between each parameter to achieve the most optimal effect of SPCS. By sorting out the current status of the application of SPCS technology in solar thermal/photovoltaic, aerospace, buildings, textile, and other industries, this analysis clarifies the requirements for various latent heat, phase change temperature, and other properties under different environmental conditions. Through a comprehensive discussion of SPCS technology, this paper accurately captures the development trend of efficiently and comprehensively utilizing solar energy by analyzing existing scientific problems. It identifies bottlenecks in SPCS technology and suggests future development directions that need focused attention. The insights gained from this analysis may provide a theoretical basis for designing strategies, enhancing performance, and promoting the application of SPCS.
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