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Design and development of a reflective membrane for a novel Building Integrated Concentrating Photovoltaic (BICPV) ‘Smart Window’ system

机译:用于新型建筑集成式聚光光伏(BICPV)“智能窗户”系统的反射膜的设计和开发

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摘要

As a new concept, Building Integrated Concentrating PV (BICPV) “smart window” system consisting of a thermotropic layer with integrated PVs is treated as an electricity-generating smart window or glazed façade. This system automatically responds to climatic conditions by varying the balance of solar energy reflected to the PV for electricity generation and transmitted through the system into the building for provision of light and heat. Its success heavily relies on the understanding of the relationship between the transmittance/reflectance properties and the composition of the thermotropic layer under different environmental temperatures. Herein, hydroxypropyl cellulose (HPC) polymer and gellan gum based hydrogel membranes with different compositions were synthesized as the reflective thermotropic layer for the smart BICPV system and their transmittance and reflectance were systematically investigated in terms of hydrogel composition and environmental temperature. Specifically, a switching temperature (Ts) of ~42 °C (6 wt. % HPC) was recorded, the measured transmittance decreases from ~ 90% to ~20%, with the temperature of the reflective layer increasing from 20°C to 60°C. No hysteresis in optical property was observed upon heating-cooling cycle of HPC membrane samples. The measured reflectivity increased with heating from ~10 % below the Ts to ~50 % above the Ts (for 6 wt. % HPC). These features indicate that the as-prepared HPC based thermotropic hydrogel layer holds great potential for application in next generation BICPV smart windows.
机译:作为一个新概念,由集成了PV的热致变质层组成的建筑物集成式PV(BICPV)“智能窗口”系统被视为发电智能窗口或玻璃幕墙。该系统通过改变反射到光伏发电的太阳能的平衡来自动响应气候条件,并通过系统传输到建筑物中以提供光和热。它的成功在很大程度上取决于对在不同环境温度下的透射率/反射率特性和热致性层组成之间关系的理解。在本文中,合成了具有不同组成的羟丙基纤维素(HPC)聚合物和吉兰胶基水凝胶膜作为智能BICPV系统的反射热敏层,并根据水凝胶组成和环境温度系统地研究了它们的透射率和反射率。具体来说,记录的开关温度(Ts)为〜42°C(6 wt。%HPC),测量的透射率从〜90%降低至〜20%,反射层的温度从20°C升高至60 ℃。在HPC膜样品的加热-冷却循环中没有观察到光学性能的滞后现象。随着加热,测得的反射率从低于Ts的〜10%增加到高于Ts的〜50%(对于6 wt。%的HPC)。这些特征表明,所制备的基于HPC的热致水凝胶层在下一代BICPV智能窗户中具有巨大的应用潜力。

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