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Determination of the Thermal Insulation for the Model Building Approach and the Global Effects in Turkey

机译:确定模型建立方法的隔热效果以及土耳其的整体影响

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One of the most important considerations to be considered in the design of energy efficient buildings is the thickness of the insulation to be applied to the building. In this study the existing building stock in Turkey has been investigated depending on parameters such as the height and the area. A model building has been created covering all of these buildings. Fuel emission reduction of combustion system was calculated in the case of insulation applied to this model building. Heat loss of the existing building stock and exhaust emissions and the contribution to the country's economy with the model building methodology are also determined. The results show that the optimum insulation thicknesses vary between 3.21 and 7.12 cm, the energy savings vary between 9.23 US$/m(2) and 43.95 US$/m(2), and the payback periods vary between 1 and 8.8 years depending on the regions. As a result of the study when the optimum insulation thickness is applied in the model building, the total energy savings for the country are calculated to be 41.7 billion US$. And also total CO2 emissions for the country are calculated to be 57.2 billion kg CO2 per year after insulation.
机译:在节能建筑的设计中要考虑的最重要的考虑因素之一是要应用于建筑物的隔热层的厚度。在这项研究中,根据高度和面积等参数对土耳其现有的建筑存量进行了调查。已创建涵盖所有这些建筑物的模型建筑物。在将隔热材料应用于此模型建筑物的情况下,计算了燃烧系统的燃料减排量。还确定了现有建筑存量的热损失和废气排放,以及采用模型构建方法论对国家经济的贡献。结果表明,最佳绝缘厚度在3.21到7.12厘米之间变化,节能量在9.23美元/平方米(2)和43.95美元/平方米(2)之间变化,投资回收期在1年到8.8年之间,具体取决于地区。研究的结果是,在模型建筑中采用最佳隔热厚度时,该国节省的总能源量估计为417亿美元。隔热后,该国每年的二氧化碳总排放量据计算为572亿公斤。

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