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The effect of external surface properties on the thermal behaviour of a transparently insulated wall

机译:外表面特性对透明隔热墙体热性能的影响

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摘要

The properties of transparent plaster covering transparent insulation materials (TIM) were investigated using a whole building simulation program (ESP-r). The outer plaster was made from glass balls of different diameter, glued together with synthetic resin. The transmittance of the whole transparent covering layer (plaster + TIM) was estimated for different solar incident angles by laboratory measurements. The innovative character of the materials required refining of ESP-r's optical database in order to take into account these new characteristics. The transparently insulated building facade was proposed as a solar energy storage system. The results of the initial analysis showed the desirable optical properties, estimated for sun incident angles on the façade at a latitude of 52 degrees north. Then, simulations based on real climatic data for Central Europe were conducted to predict the thermal TIM wall behaviour. The influence of the structure on the diurnal heat storage potential was investigated for selected periods of the year.
机译:使用整个建筑模拟程序(ESP-r)研究了覆盖透明绝缘材料(TIM)的透明石膏的性能。外部灰泥由不同直径的玻璃球制成,并与合成树脂粘合在一起。通过实验室测量,估算了不同太阳入射角下整个透明覆盖层(灰泥+ TIM)的透射率。材料的创新特性需要完善ESP-r的光学数据库,以考虑到这些新特性。提出了一种透明绝缘的建筑立面作为太阳能存储系统。初始分析的结果显示出理想的光学特性,该光学特性针对北纬52度的立面上的太阳入射角进行了估计。然后,基于中欧的实际气候数据进行了模拟,以预测TIM墙体的热行为。在一年中的选定时间段内,研究了结构对昼夜蓄热潜力的影响。

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