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Lighting and Energetic Characteristics of Transparent Insulating Materials: Experimental Data and Calculation

机译:透明绝缘材料的发光和能量特性:实验数据和计算

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This paper reports the study of thermal and optical properties of innovative transparent insulating materials (TIM) for glazing systems: silica aerogel (pane and granular) and capillary geometric media. Twenty-one samples were assembled with several kinds of glasses in various combinations with TIM. Transmission and reflection coefficients versus wavelength were measured and the results were elaborated in compliance with UNI EN 410/2000. The better performance was given by the monolithic aerogel both for light transmit-tance (0.58 in interspace between two 4 mm float glasses) and thermal insulation (U=0.63W·m~(-2)·K~(-1)). The solar factor was 0.70. The performance of the innovative glazing systems was compared with data related to windows normally used in Italy and in EU countries, in order to comply with the limits of the local normative standard required for thermal transmittance. The results showed a very promising behaviour of TIMs, in fact a 60% reduction in heat losses with respect to a double glazing with a low-e layer was achieved, with only a 27% reduction in light transmittance. For the granular systems, a U-value little higher than 1W·m~(-2)K~(-1) with the same total thickness was obtained, even if the light reduction was about 66%.
机译:本文报道了用于玻璃系统的创新透明绝缘材料(TIM)的热学和光学性质的研究:二氧化硅气凝胶(窗格和颗粒)和毛细管几何介质。用TIM各种组合的眼镜将二十一个样品组装在一起。测量透射系数和反射系数与波长的关系,并根据UNI EN 410/2000精心制定结果。整体式气凝胶在透光率(两个4 mm浮法玻璃之间的间隙中为0.58)和隔热(U = 0.63W·m〜(-2)·K〜(-1))方面均具有更好的性能。太阳因子为0.70。将创新玻璃系统的性能与意大利和欧盟国家通常使用的窗户相关的数据进行了比较,以符合传热要求的当地规范标准的限制。结果表明,TIM的行为非常有前途,实际上,相对于带低e层的双层玻璃,其热损失减少了60%,而透光率仅减少了27%。对于粒状系统,即使减光率约为66%,也可以获得略高于1W·m〜(-2)K〜(-1)的U值,且总厚度相同。

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