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Optimum insulation thicknesses for building walls with respect to cooling and heating degree-hours in the warmest zone of Turkey

机译:相对于土耳其最暖区的制冷和制热小时数,建筑物墙体的最佳隔热厚度

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Thermal insulation is one of the most effective energy conservation measures for cooling and heating in buildings. Therefore, determining and selecting the optimum thickness of insulation is the main subject of many engineering investigations. In this study, the determination of optimum insulation thickness on external walls of buildings is comparatively analyzed based on annual heating and cooling loads. The transmission loads, calculated by using measured long-term meteorological data for selected cities, are fed into an economic model (P_1 -P_2 method) in order to determine the optimum insulation thickness. The degree-hours method that is the simplest and most intuitive way of estimating the annual energy consumption of a building is used in this study. The results show that the use of insulation in building walls with respect to cooling degree-hours is more significant for energy savings compared to heating degree-hours in Turkey's warmest zone. The optimum insulation thickness varies between 3.2 and 3.8 cm; the energy savings varies between 8.47 and 12.19 $/m~2; and the payback period varies between 3.39 and 3.81 years depending on the cooling degree-hours. On the other hand, for heating load, insulation thickness varies between 1.6 and 2.7 cm, energy savings varies between 2.2 and 6.6 $/m~2 , and payback periods vary between 4.15 and 5.47 years.
机译:隔热是建筑物制冷和供暖的最有效的节能措施之一。因此,确定和选择最佳的绝缘厚度是许多工程研究的主题。在这项研究中,根据每年的供暖和制冷负荷,比较分析了建筑物外墙的最佳保温厚度。使用选定城市的长期气象数据,通过计算得出的传输负荷被输入到经济模型(P_1-P_2方法)中,以确定最佳绝缘厚度。本研究使用度数小时方法,这是估算建筑物年能耗的最简单,最直观的方法。结果表明,相对于土耳其最暖地区的采暖度小时数,在建筑墙体中使用相对于冷却度数小时的保温材料对节约能源更为重要。最佳绝缘厚度在3.2至3.8厘米之间变化;节能量介于8.47和12.19 $ / m〜2之间;投资回收期在3.39至3.81年之间,具体取决于冷却时间。另一方面,对于热负荷,保温层厚度在1.6至2.7 cm之间变化,节能量在2.2至6.6 $ / m〜2之间变化,投资回收期在4.15至5.47年之间变化。

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