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用于辐射冷却和隐私保护的相变超材料智能窗

Phase-transition metamaterial smart window for radiative cooling and privacy protection.

作者信息

Wu Linsong, Chen Shujing, Lin Chengyou

出版信息

Opt Express. 2024 Nov 4;32(23):41213-41229. doi: 10.1364/OE.538463.

DOI:10.1364/OE.538463
PMID:39573440
Abstract

This paper proposes a smart window for radiative cooling with adjustable transparency by leveraging the phase transition property of VO. The proposed smart window exhibits daytime visible light transmission and near-infrared light reflection, all-day radiative cooling, and a nighttime privacy protection feature. It comprises a bottom layer of VO/Ag/VO and top cubic two-dimensional SiO gratings, with structural parameters optimized by the genetic algorithm to ensure excellent optical performance. In the daytime, 75.4% visible light transmittance and 87.8% near-infrared reflectance can be achieved by utilizing the dielectric state of VO. It also achieves low light transmission of 9.8% by using the metallic state of VO, which is suitable for nighttime privacy protection. Furthermore, it has an all-day outside emissivity of 98.2% for radiative cooling, together with a low inside emissivity of 1.9% for effectively inhibiting the radiation heat transfer. In addition, the proposed structure is insensitive to the angles of incidence and the polarization of light, making it advantageous for radiative cooling. During the daytime, it reduces the temperature by 17.7 K compared to a glass of equal thickness when the non-radiative heat coefficient is 12 W/m/K. At night, it achieves a cooling power of 124.7 W/m, achieving a cooling effect of 8.9 K below ambient temperature. The proposed smart window is promising for various application scenarios for radiative cooling and privacy protection and could be used as windows for buildings and vehicles.

摘要

本文提出了一种利用VO的相变特性实现透明度可调的辐射冷却智能窗。所提出的智能窗具有白天可见光透过、近红外光反射、全天辐射冷却以及夜间隐私保护功能。它由VO/Ag/VO底层和顶部立方二维SiO光栅组成,其结构参数通过遗传算法进行优化,以确保优异的光学性能。在白天,利用VO的介电状态可实现75.4%的可见光透过率和87.8%的近红外反射率。通过使用VO的金属状态,它还实现了9.8%的低光透过率,适用于夜间隐私保护。此外,它具有98.2%的全天室外发射率用于辐射冷却,以及1.9%的低室内发射率以有效抑制辐射传热。此外,所提出的结构对入射角和光的偏振不敏感,有利于辐射冷却。在白天,当非辐射热系数为12W/m/K时,与相同厚度的玻璃相比,它可使温度降低17.7K。在夜间,它实现了124.7W/m的冷却功率,实现了比环境温度低8.9K的冷却效果。所提出的智能窗在辐射冷却和隐私保护的各种应用场景中具有广阔前景,可作为建筑物和车辆的窗户使用。

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引用本文的文献

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Design strategies, manufacturing, and applications of radiative cooling technologies.辐射冷却技术的设计策略、制造与应用
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