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Thermoeconomic optimization of insulation thickness considering condensed vapor in buildings

机译:考虑建筑物中冷凝蒸汽的隔热层厚度的热经济学优化

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Developing technology and increasing population makes energy consumption more important. Most of energy is used for space heating in Turkey, consequently, insulation of external walls is too important. In the present work, optimum insulation thickness considering condensed vapor in existing buildings for Kutahya which is one of coldest cities in Turkey has been studied. The optimization is based on the thermoeconomic analysis. Since Kutahya is the most polluted city in Turkey, and the source of this pollution is energy consumption, it has become an obligation to save energy and to reduce its effects. In this study, exergy method with the different reference states which are normally available in a building has been used. The effect of condensed vapor on exergy also has been taken into account. The optimum insulation thickness determined as 0.060, 0.065, 0.075 m with a rate of 74.9%, 76.3% and 78.8% in the energy saving for indoor temperature of 18, 20 and 22℃, respectively. Therefore, a decreasing in the air pollutants about at same rates has been obtained.
机译:技术的发展和人口的增加使能源消耗变得更加重要。在土耳其,大部分能源都用于空间取暖,因此,外墙保温非常重要。在目前的工作中,已经研究了考虑到土耳其最冷的城市之一的库塔赫亚现有建筑物中的冷凝蒸汽的最佳绝缘厚度。该优化基于热经济分析。由于库塔赫亚(Kutahya)是土耳其污染最严重的城市,而污染的源头是能源消耗,因此它已成为节约能源和降低其影响的义务。在这项研究中,使用了通常在建筑物中具有不同参考状态的火用法。还已经考虑了冷凝蒸气对火用的影响。在18、20和22℃的室内温度下,节能的最佳绝缘厚度分别为0.060、0.065、0.075 m,比率分别为74.9%,76.3%和78.8%。因此,已经获得了大约相同速率的空气污染物减少。

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