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基于钨八棱柱阵列的近完美光谱选择性超表面太阳能吸收器。

Near-perfect spectrally-selective metasurface solar absorber based on tungsten octagonal prism array.

作者信息

Xu Mingpan, Guo Lin, Zhang Pengfei, Qiu Yu, Li Qing, Wang Jikang

机构信息

School of Energy Science and Engineering, Central South University Changsha Hunan 410083 China

Energy Research Institute, Qilu University of Technology Jinan 250014 P. R. China.

出版信息

RSC Adv. 2022 Jun 7;12(26):16823-16834. doi: 10.1039/d2ra02802f. eCollection 2022 Jun 1.

Abstract

Solar selective absorbers influence the photothermal efficiency of high-temperature solar thermal applications directly and significantly. In present work, a metasurface absorber consisting of an octagonal prism array is proposed, optimized and analyzed. Firstly, the structure parameters of the absorber are optimized, finding the optimal absorber achieves near-perfect spectrally-selectivity compared with the perfect solar absorber. The high solar absorptivity of 0.9591, low emissivity of 0.1594-0.3694, and high photothermal efficiency of 94.72-83.10% are achieved at 1073-1573 K and 1000 suns. Then, the mechanisms leading to the excellent spectral selectivity are investigated, suggesting that the coupling effects of multi-plasmon resonance modes and the impedance matching lead to the high solar absorptivity. Meanwhile, the impedance mismatching is the mechanism to minimize the emissivity in the mid-IR region. Moreover, whether the spectral absorptivity can be changed by structural parameters is investigated, suggesting that the excircle diameter of the first tungsten octagonal prism and the height of SiO under the octagonal prism can influence the spectral absorptivity obviously. Finally, the metasurface absorber is demonstrated to be highly insensitive to both polarization and incident angles. These results suggest that the proposed metasurface absorber should be suitable for high-temperature solar thermal devices.

摘要

太阳能选择性吸收器对高温太阳能热应用的光热效率有直接且显著的影响。在本工作中,提出、优化并分析了一种由八棱柱阵列组成的超表面吸收器。首先,对吸收器的结构参数进行优化,发现与理想太阳能吸收器相比,优化后的吸收器实现了近乎完美的光谱选择性。在1073 - 1573 K和1000个太阳辐射强度下,实现了0.9591的高太阳能吸收率、0.1594 - 0.3694的低发射率以及94.72 - 83.10%的高光热效率。然后,研究了导致优异光谱选择性的机制,表明多等离子体共振模式的耦合效应和阻抗匹配导致了高太阳能吸收率。同时,阻抗失配是使中红外区域发射率最小化的机制。此外,研究了光谱吸收率是否可以通过结构参数改变,表明第一个钨八棱柱的外接圆直径和八棱柱下方SiO的高度会明显影响光谱吸收率。最后,证明了该超表面吸收器对偏振和入射角都高度不敏感。这些结果表明,所提出的超表面吸收器应适用于高温太阳能热装置。

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