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构建用于太阳能调控的新型生物质基双基地窗口。

Constructing a New Biomass-Based Bistatic Window for Solar Regulation.

作者信息

Pu Jihong, Han Miao, Shen Chao, Wang Julian, Lu Lin

机构信息

Department of Building Environment and Energy Engineering, The Hong Kong Polytechnic University, Hong Kong, 100872, China.

School of Architecture and Design, Harbin Institute of Technology, Key Laboratory of Cold Region Urban and Rural Human Settlement Environment Science and Technology, Ministry of Industry and Information Technology, Harbin, 150090, China.

出版信息

Adv Sci (Weinh). 2024 Aug;11(29):e2401991. doi: 10.1002/advs.202401991. Epub 2024 May 29.

Abstract

Smart windows effectively respond to the ever-changing climatic conditions, offering a smart solution for low-carbon buildings. However, current smart windows derived from chromic materials often have inferior solar modulation ability, or showcase high haze that obstructs outdoor views. Here, instead of developing new chromic materials, a new bistatic window is proposed for ultra-high solar modulation and luminous transmission. The new developed window can reduce the indoor surface temperature for ≈11 °C, and reduce the building space cooling and heating energy consumption by 30% to 40%, providing significant energy-related advances over traditional smart windows. In detail, the bistatic window exhibits excellent solar modulation ability (ΔT = 61%), high visible transmittance in both bleached (T = 91%) and colored (T = 56%) states, low haze (< 1%), rapid switching response (switching time < 1 min), high color rendering index (CRI > 80), and long-cyclic stability after 1000 cycles. With the advantages of facile fabrication and scalability, it is foreseen the developed bistatic window holds promising prospect for the next-generation low-carbon buildings, paving a new way for future advancements in the fields of smart windows.

摘要

智能窗户能够有效应对不断变化的气候条件,为低碳建筑提供了智能解决方案。然而,目前基于变色材料的智能窗户往往太阳能调制能力较差,或者雾度较高,遮挡了室外视野。在此,本文提出了一种新型双稳态窗户,用于实现超高的太阳能调制和光透射,而不是开发新的变色材料。新开发的窗户可使室内表面温度降低约11°C,并将建筑空间的制冷和供暖能耗降低30%至40%,与传统智能窗户相比,在能源相关方面取得了显著进展。具体而言,双稳态窗户具有出色的太阳能调制能力(ΔT = 61%),在漂白状态(T = 91%)和着色状态(T = 56%)下均具有较高的可见光透射率,低雾度(< 1%),快速切换响应(切换时间< 1分钟),高显色指数(CRI > 80),以及1000次循环后的长循环稳定性。凭借易于制造和可扩展性的优势,预计所开发的双稳态窗户在下一代低碳建筑中具有广阔的应用前景,为智能窗户领域的未来发展开辟了一条新道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e90/11304258/033865873bfc/ADVS-11-2401991-g007.jpg

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