首页> 外文会议>International conference on energy sustainability;ES2010 >A NEW APPROACH TO DETERMINE OPTIMUM INSULATION THICKNESS FOR ALL BUILDINGS IN TURKEY BASED ON HEATING LOADS AND HEAT GAINS
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A NEW APPROACH TO DETERMINE OPTIMUM INSULATION THICKNESS FOR ALL BUILDINGS IN TURKEY BASED ON HEATING LOADS AND HEAT GAINS

机译:一种基于热负荷和热增益确定土耳其所有建筑物最佳隔热厚度的新方法

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In Turkey, 'Thermal Insulation Requirements for Buildings" was implemented to provide energy saving in buildings in 2000. After this, more then seven hundred thousand new buildings are constructed. Determining the correct material and optimum insulation thickness are very important issues in these buildings for thermal insulation. Calculations using monthly outdoor temperatures and solar radiation are done for XPS insulation material and 4 different climatic regions in Turkey. Natural gas, the most preferred in our country is selected as fuel. P_1-P_2 method is used to obtain energy saving and payback period. New correlations are specified to determine optimum insulation thickness depending on building heat gains and areas. Furthermore, buildings are categorized into three building class according to external wall area and floor/roof area. Effect of change in building external wall area, floor or roof area, window area to payback period, energy saving and optimum thickness are investigated. As a result, effect of architectural design is determined on thermal insulation. All calculation results are shown in a table for four different climatic regions and three different types of buildings which have the same gross volume.
机译:土耳其于2000年实施了《建筑物隔热要求》,以节约建筑物的能源。此后,建造了超过70万栋新建筑物,对于这些建筑物而言,确定正确的材料和最佳的隔热厚度是非常重要的问题。使用土耳其的XPS隔热材料和4个不同气候区域,使用每月室外温度和太阳辐射进行计算,选择了我国最优选的天然气作为燃料,并使用P_1-P_2方法来实现节能和节能。投资回收期:根据建筑物的热量获取和面积指定了新的相关关系,以确定最佳的保温厚度;此外,根据外墙面积和地板/屋顶面积,将建筑物分为三类:建筑物外墙面积,地板变化的影响或屋顶面积,可回收期的窗户面积,节能和最佳厚度吃了结果,确定了建筑设计对隔热的影响。表格中显示了针对四个不同气候区域和具有相同总体积的三种不同类型建筑物的所有计算结果。

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