多孔体积太阳能接收器及其增强体积吸收的研究进展

Ya-Ling He , Shen Du , Sheng Shen
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引用次数: 2

摘要

多孔体积太阳能接收器是一种可以体积吸收太阳辐射并实现高效太阳能到热能转换的太阳能接收器。自20世纪80年代以来,多孔体积太阳能接收器得到了发展。本文重点介绍了常压和加压多孔体积太阳能接收器的发展进展,包括接收器的结构设计、材料选择、实验研究方法、热性能比较和瞬态响应特性。另一方面,介绍了包括直接孔隙尺度和体积平均模拟在内的理论研究方法。介绍了孔尺度重建方法和研究孔尺度流体流动和传热过程的程序。对于体积平均法,总结了要求解的控制方程中经验参数的选择的详细描述。介绍了基于这些方法的典型研究结果,并指出了研究的局限性。此外,还对提高接收器体积吸收和提高热效率的方法进行了全面的综述。详细介绍了几何参数优化和光谱选择性吸收两种方法。这篇综述将更好地了解多孔体积太阳能接收器的发展和研究方法,并启发未来对接收器性能改进的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances in porous volumetric solar receivers and enhancement of volumetric absorption

Porous volumetric solar receivers are one type of solar receivers that can volumetrically absorb solar radiation and achieve efficient solar-to-thermal energy conversion. Porous volumetric solar receivers have been developed since 1980s. In this review, we focus on the development progress of the atmospheric and pressurized porous volumetric solar receivers, in which the structural designs, the material selections, the experimental research methods, the comparison of thermal performance, and the transient response characteristic of the receivers were reviewed. On the other hand, the theoretical research methods including the direct pore-scale and volume averaging simulations were introduced. The pore-scale reconstruction method and the procedure to investigate the fluid flow and heat transfer processes at the pore-scale were presented. For the volume averaging method, detailed descriptions for the selection of empirical parameters in the governing equations to be solved were summarized. Typical research results based on these methods were presented and research limitations were also pointed out. Furthermore, the methods for the enhancement of volumetric absorption and the improvement of thermal efficiency of the receivers have been comprehensively reviewed. Two methods including geometrical parameters optimization and spectrally selective absorption were presented in detail. This review will provide a better understanding of the development and research methods for porous volumetric solar receivers, and inspire future studies for the performance improvement of the receivers.

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