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Monitoring results of an interior sun protection system with integrated latent heat storage

机译:集成了潜热存储器的内部防晒系统的监控结果

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An interior sun protection system consisting of vertical slats filled with phase change material (PCM) was monitored from winter 2008 until summer 2010. While conventional interior sun protection systems often heat up to temperatures of 40 °C or more, the monitoring results show that the surface temperature on the interior side of the PCM-filled slats hardly ever exceeded the PCM melting temperature of 28℃ even in case of long-term intense solar radiation. As long as the PCM is not fully melted, the latent heat storage effect reduces the solar heat gain coefficient (g-value) of the sun protection system to 0.25 for a totally closed blind, and 0.30 for slats set at 45° (the g-values of the same system without PCM are 0.35 and 0.41, respectively). This reduced the maximum air temperature in the offices by up to 2 K in contrast to a reference room with a comparable conventional blind. The sun protection system with PCM therefore considerably improves thermal comfort. In order to discharge the PCM, the stored heat must be dissipated during the night. In climates with sufficiently low outside air temperatures, this is best achieved using a ventilation system in combination with tilted windows.
机译:从2008年冬季到2010年夏季,对由垂直板条填充相变材料(PCM)组成的内部防晒系统进行了监控。尽管传统的内部防晒系统通常会加热到40°C或更高的温度,但监测结果表明,即使在长期强烈的太阳辐射下,填充PCM的板条内侧的表面温度也几乎不会超过PCM的熔化温度28℃。只要PCM尚未完全融化,潜热存储效应就会将遮阳系统的太阳热增益系数(g值)对于完全封闭的百叶窗降低到0.25,而将板条设置在45°则降低到0.30(g -没有PCM的同一系统的-值分别为0.35和0.41)。与具有类似传统百叶窗的参考室相比,这将办公室的最高空气温度降低了2K。因此,带有PCM的防晒系统大大提高了热舒适性。为了使PCM放电,必须在晚上散发存储的热量。在外部空气温度足够低的气候中,最好将通风系统与倾斜的窗户结合使用。

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