Optimal Thermal Insulation Thickness in Isolated Air-Conditioned Buildings and Economic Analysis

M. Mohamed
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引用次数: 2

Abstract

The removal building heat load and electrical power consumption by air conditioning system are proportional to the outside conditions and solar radiation intensity. Building construction materials has substantial effects on the transmission heat through outer walls, ceiling and glazing windows. Good thermal isolation for buildings is important to reduce the transmitted heat and consumed power. The buildings models are constructed from common materials with 0 - 16 cm of thermal insulation thickness in the outer walls and ceilings, and double-layers glazing windows. The building heat loads were calculated for two types of walls and ceiling with and without thermal insulation. The cooling load temperature difference method, CLTD, was used to estimate the building heat load during a 24-hour each day throughout spring, summer, autumn and winter seasons. The annual cooling degree-day, CDD was used to estimate the optimal thermal insulation thickness and payback period with including the solar radiation effect on the outer walls surfaces. The average saved energy percentage in summer, spring, autumn and winter are 35.5%, 32.8%, 33.2% and 30.7% respectively, and average yearly saved energy is about of 33.5%. The optimal thermal insulation thickness was obtained between 7 - 12 cm and payback period of 20 - 30 month for some Egyptian Cities according to the Latitude and annual degree-days.
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隔离式空调建筑最佳保温厚度及经济分析
空调系统去除建筑热负荷和耗电量与室外条件和太阳辐射强度成正比。建筑建筑材料对通过外墙、天花板和玻璃窗的热量传递有实质性的影响。良好的建筑隔热性能对减少传热和能耗具有重要意义。建筑模型由普通材料建造,外墙和天花板的隔热厚度为0 - 16厘米,双层玻璃窗。建筑热负荷计算了两种类型的墙壁和天花板有和没有隔热。采用冷负荷温差法(CLTD)对春、夏、秋、冬四季每天24小时的建筑热负荷进行估算。利用年冷却度日(CDD)估算了考虑太阳辐射对外墙表面影响的最佳保温厚度和回收期。夏季、春季、秋季和冬季平均节能率分别为35.5%、32.8%、33.2%和30.7%,年平均节能率约为33.5%。根据纬度和年度数,埃及部分城市的最佳保温厚度为7 ~ 12 cm,回收期为20 ~ 30个月。
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