过热(电)
材料科学
热能储存
热的
光电子学
相变材料
热导率
热能
太阳能
储能
能量转换效率
光学
复合材料
气象学
电气工程
功率(物理)
物理
工程类
热力学
量子力学
作者
Yafang Zhang,Jiebin Tang,Jialin Chen,Yuhai Zhang,Xiangxiang Chen,Meng Ding,Weijia Zhou,Xijin Xu,Hong Liu,Guobin Xue
标识
DOI:10.1038/s41467-023-39190-1
摘要
Abstract Solar-thermal storage with phase-change material (PCM) plays an important role in solar energy utilization. However, most PCMs own low thermal conductivity which restricts the thermal charging rate in bulk samples and leads to low solar-thermal conversion efficiency. Here, we propose to regulate the solar-thermal conversion interface in spatial dimension by transmitting the sunlight into the paraffin-graphene composite with side-glowing optical waveguide fiber. This inner-light-supply mode avoids the overheating surface of the PCM, accelerates the charging rate by 123% than that of the traditional surface irradiation mode and increases the solar thermal efficiency to ~94.85%. Additionally, the large-scale device with inner-light-supply mode works efficiently outdoors, indicating the potential of this heat localization strategy in practical application.
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