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Analyses of phase change materials' efficiency in warm-summer humid continental climate conditions

机译:温暖夏季潮湿大陆气候条件下相变材料效率分析

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The usage of phase change materials (PCMs) is a way to store excess energy produced during the hot time of the day and release it during the night thereby reducing the overheating problem. While, in Latvian climate conditions overheating is not a big issue in traditional buildings since it happens only a couple of weeks per year air conditioners must still be installed to maintain thermal comfort. The need for cooling in recently built office buildings with large window area can increase significantly. It is therefore of great interest if the thermal comfort conditions can be maintained by PCMs alone or with reduced maximum power of installed cooling systems. Our initial studies show that if the test building is well-insulated (necessary to reduce heat loss in winter), phase change material is not able to solidify fast enough during the relatively short night time. To further investigate the problem various experimental setups with two different phase change materials were installed in test buildings. Experimental results are compared with numerical modelling made in software COMSOL Multiphysics. The effectiveness of PCM using different situations is widely analysed.
机译:相变材料(PCM)的使用是一种储存在当天的炎热时间内产生的过量能量的方法,并在夜间释放它,从而降低过热问题。虽然,在拉脱维亚气候条件过热中,传统建筑物不是一个大问题,因为它仍然只有几周的每年空调仍然安装,以保持热舒适度。最近建于大窗区的办公楼冷却需求可以显着增加。因此,如果可以通过单独的PCM或降低安装的冷却系统的最大功率降低了热舒适条件,则非常感兴趣。我们的初步研究表明,如果测试建筑是绝缘绝缘的(在冬季减少热量损失),相变材料在相对短的夜间期间无法足够快地凝固。为了进一步研究问题,在测试建筑中安装了具有两种不同相变材料的各种实验装置。将实验结果与软件COMSOL多发性中的数值建模进行了比较。广泛分析了PCM使用不同情况的有效性。

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