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LCC analysis for energy-saving in residential buildings with different types of construction masonry blocks

机译:适用于不同类型砖石结构住宅的LCC节能分析

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Space heating in cold climates requires large quantities of heat energy to be spent. Therefore, consider able energy-savings can be obtained using construction wall materials with low thermal conductivity in the buildings. In this study, an economic analysis (LCC analysis) was performed in order to estimate the optimum thickness, saving and pay-back period which minimizes the total cost including the masonry material and the energy consumption costs. The LCC analysis was carried out for external walls of build ings in Afyonkarahisar, Turkey. Considering long term and current outdoor air temperature records, degree-days (DD) values were used, and the variation of annual energy requirement of the building was investigated for various masonry (product) types for per unit area. Masonry products were block elements with one, two, three and four row-hollows, hollow-brick and aerated concrete. As the fuel types, fuel-oil, natural gas, coal and electricity were considered in the analysis. The functional unit of the LCC was the use of 1 m2 of the building's living area over 50 year's period. As a conclusion, the highest energy-saving was obtained by the use of hollow blocks with 4 rows. Moreover, the most suitable fuels for all climate zones appear to be electricity and fuel-oil. But, the natural gas is a better choice when the atmospheric pollution is an important consideration.
机译:寒冷气候中的空间供暖需要消耗大量的热能。因此,在建筑物中使用导热系数低的建筑墙体材料可以获得足够的节能效果。在这项研究中,进行了经济分析(LCC分析)以估算最佳厚度,节省和回收期,从而最大程度地降低了包括砌体材料和能源消耗成本在内的总成本。在土耳其阿菲永卡拉希萨尔(Afyonkarahisar)对建筑物的外墙进行了LCC分析。考虑到长期和当前的室外空气温度记录,使用了度日(DD)值,并且针对每单位面积的各种砖石(产品)类型,研究了建筑物的年度能源需求变化。砖石产品是具有一,二,三和四排空心,空心砖和加气混凝土的砌块元素。作为燃料类型,分析中考虑了燃油,天然气,煤炭和电力。 LCC的功能单元是在50年的时间内使用建筑物的居住面积1平方米。结论是,使用四排空心砖可获得最高的节能效果。此外,在所有气候区中最合适的燃料似乎是电力和燃料油。但是,当大气污染成为重要考虑因素时,天然气是更好的选择。

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