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Experimental characterisation of a smart glazing with tuneable transparency, light scattering ability and electricity generation function

机译:具有可调透明度,光散射能力和发电功能的智能玻璃的实验表征

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Daylighting control technologies have become an essential part of sustainable building design to reduce overheating, glare and energy consumption in buildings. In this paper, a smart glazing system where a Building Integrated Photovoltaic (BIPV) glazing is coupled with an optically switchable thermotropic hydrogel layer is proposed to improve the daylighting control and electricity generation performance of traditional BIPV glazings. Thermotropic (TT) hydrogels made of various weight percentage combinations of hydroxypropyl cellulose (HPC) polymer, gellan gum and sodium chloride (NaCl) salt were synthesised and first evaluated by visible-nearinfrared spectroscopy. Subsequently, small-scale prototypes of the proposed BIPV thermotropic (BIPV-TT) laminated glazing based on these TT hydrogels were fabricated and characterised experimentally under controlled laboratory conditions. The TT hydrogel, which was synthesised of 6 wt% HPC, 0.5 wt% gellan gum and 4.5 wt% NaCl, was selected for further experimental characterisations in a dynamic outdoor environment, due to its appropriate transition temperature of 30.7 degrees C for use in mild climates with a wide modulation range of solar transmittance from 85.8% (in the transparent state) to 9.6% (in the light-scattering state). The outdoor tests were conducted in Nottingham, the UK, on typical summer days with sunny and partial cloudy conditions. The results showed that using the prototype BIPV-TT laminated glazing can reduce up to 80% of the solar radiation transmitted into the outdoor test cell, while providing up to 12% higher electrical power outputs, compared to its counterpart system with no thermotropic hydrogel applied.
机译:灯光控制技术已成为可持续建筑设计的重要组成部分,以减少大楼的过热,眩光和能耗。在本文中,提出了一种智能玻璃系统,其中建筑集成光伏(BIPV)玻璃与光学可切换的热致热水凝胶层联合,以改善传统BIPV玻璃的日光控制和发电性能。合成了由各种重量百分比组合制成的羟丙基纤维素(HPC)聚合物,Gellan Gum和氯化钠(NaCl)盐的热致氢(TT)水凝胶,并首先通过可见除杂散的光谱评估。随后,在受控实验室条件下,制造基于这些TT水凝胶的所提出的BIPV热辐射(BIPV-TT)层压玻璃的小规模原型,并在受控实验室条件下进行实验表征。选择于6wt%HPC,0.5wt%Gellan Gum和4.5wt%NaCl的TT水凝胶在动态室外环境中进行了进一步的实验特征,由于其适当的30.7℃,用于温和太阳脉透射率宽范围为85.8%(透明状态)至9.6%(在光散射状态下)。户外测试在英国诺丁汉,在典型的夏日,阳光明媚,部分多云的条件。结果表明,使用原型BiPv-TT层压玻璃可以减少高达80%的太阳辐射传输到室外测试单元,同时提供高达12%的电力输出,而不是施加热辐射水凝胶的对应系统相比。

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