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Enhancing the thermal performance of triple vacuum glazing with low-emittance coatings

机译:使用低辐射涂层增强三层真空玻璃的热性能

摘要

The thermal performance of triple vacuum glazing (TVG) with one to four internal glass surfaces coated with a low-e (emittance) coating was simulated using a finite volume model. The simulated TVG comprises three, 4 mm thick glass panes with two vacuum gaps, sealed with indium metal and separated by an array of stainless steel pillars, 0.2 mm high, 0.3 mm diameter and spaced at 25 mm. The simulation results show that decreasing the emittance of the four low-e coatings from 0.18 to 0.03 reduces the heat transmission U-values at the centre-of-glazing area from 0.41 W m−2 K−1 to 0.22 W m−2 K−1 for a 0.4 m by 0.4 m TVG rebated by 10 mm within a solid wood frame. When using three low-e coatings in the TVG in a heating dominated climate, the vacuum gap with two low-e coatings should be set facing the warm environment, while the vacuum gap with one coating should face the cold environment. When using two low-e coatings with an emittance of 0.03, the U-values at the centre-of-glazing area with one coating in both vacuum gaps is 0.25 W m−2 K−1; that with two coatings in the cold facing vacuum gap is 0.50 W m−2 K−1 and that with two low-e coatings in the warm facing vacuum gap is 0.33 W m−2 K−1. Thus setting one low-e coating in both vacuum gaps is better than setting two coatings in the same vacuum gap. The thermal performance of fabricated 0.4 m by 0.4 m TVGs with two and three low-e coatings were experimentally characterised and were found to be in very good agreement with simulation results.
机译:使用有限体积模型模拟了三层真空玻璃(TVG)的热性能,该玻璃具有覆盖有低辐射(发射)涂层的1-4个内部玻璃表面。模拟的TVG包括三块4mm厚的玻璃板,玻璃板具有两个真空间隙,并用铟金属密封并由一系列不锈钢柱隔开,这些不锈钢柱高0.2 mm,直径0.3 mm,间距为25 mm。仿真结果表明,将四种低辐射涂层的发射率从0.18降低到0.03会使玻璃中心区域的传热U值从0.41 W m-2 K-1降低到0.22 W m-2 K对于0.4m x 0.4m TVG,-1需在实木框架内降低10mm。在加热为主的气候中在TVG中使用三层低辐射涂层时,应将两层低辐射涂层的真空间隙设置为面对温暖的环境,而一层外露真空层的真空间隙应面对寒冷的环境。当使用两个发射率为0.03的低辐射涂层时,在两个真空间隙中只有一个涂层的玻璃中心区域的U值为0.25 W m-2 K-1。在冷面真空间隙中有两个涂层的热膨胀系数为0.50 W m-2 K-1,在冷面真空间隙中有两个低辐射涂层的热膨胀系数为0.33 W m-2 K-1。因此,在两个真空间隙中设置一个低辐射涂层比在相同的真空间隙中设置两个低涂层更好。实验表征了带有两个和三个低辐射涂层的0.4 m x 0.4 m TVG的热性能,并与模拟结果非常吻合。

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