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Determination of optimum insulation thicknesses using economical analyse for exterior walls of buildings with different masses

机译:不同群众建筑物外墙经济分析的最佳绝缘厚度测定

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摘要

In this study, five different cities were selected from the five climatic zones according to Turkish standard TS 825, and insulation thicknesses of exterior walls of sample buildings were calculated by using optimization. Vertical perforated bricks with density of 550 kg/m3 and 1000 kg/m3 were chosen within the study content. Glass wool, expanded polystyrene (XPS), extruded polystyrene (EPS) were considered as insulation materials. Additionally, natural gas, coal, fuel oil and LPG were utilized as fuel for heating process while electricity was used for cooling.  Life cycle cost (LCC) analysis and degree-day method were the approaches for optimum insulation thickness calculations. As a result, in case of usage vertical perforated bricks with density of 550 kg/m3 and 1000 kg/m3 resulted different values in between 0.005-0.007 m (5-7 mm) in the optimum insulation thickness calculations under different insulation materials.  Minimum optimum insulation thickness was calculated in case XPS was preferred as insulation material, and the maximum one was calculated in case of using glass wool.
机译:在这项研究中,根据土耳其标准TS 825,从五个气候区域中选择了五个不同的城市,通过使用优化计算样品建筑物的外墙的绝缘厚度。在研究含量内选择具有密度为550kg / m3和1000kg / m 3的垂直穿孔砖。玻璃棉,膨胀聚苯乙烯(XPS),挤出聚苯乙烯(EPS)被认为是绝缘材料。此外,天然气,煤,燃料油和液化石油气和LPG被用作加热过程的燃料,而电力用于冷却。生命周期成本(LCC)分析和学位方法是最佳绝缘厚度计算的方法。结果,在使用密度为550kg / m3和1000kg / m3的垂直穿孔砖的情况下,在不同绝缘材料下的最佳绝缘厚度计算中导致0.005-0.007m(5-7mm)的不同值。在XPS优选作为绝缘材料的情况下计算最小最佳绝缘厚度,并且在使用玻璃棉的情况下计算最大。

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    Okan Kon;

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  • 年度 2017
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  • 正文语种 eng
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