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Analyzing optimum thickness for combination of two thermal insulation materials for building walls

机译:分析用于建筑墙壁的两个绝热材料的组合的最佳厚度

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This paper reports an approach for analyzing optimum thickness for combination of two thermal insulation materials for walls of residential buildings on the basis of life cycle cost. Two thermal insulation materials for achieving contrast purposes can be use as a solution in many applications e.g. if fire resistant material added with Expanded polystyrene (EPS) to improve its fire resistance property, its thermal conductivity increases, where as if we select glass wool as thermal insulation material it has higher thermal conductivity but better fire resistant, thus if we wish to achieve high thermal resistance with better fire resistance at low cost we can use in place of single thermal insulation material a combination of two thermal insulation materials. In order to determine optimum thickness for combination of two thermal insulation materials there is a need to develop an approach, through which optimum insulation thickness for different combination of two thermal insulation materials on the basis of life cycle cost can be analyzed. To study the effect of fraction of one thermal insulation on optimum thermal insulation thickness proposed approach is applied to insulate external wall of a residential building envelope in heating application. Developed total cost objective function analyzed with the help of surface plot. In order to apply the developed approach EPS and glass wool are considered as thermal insulation materials. Through this approach optimum thickness for combination of two thermal insulation materials can be analyzed on the basis of life cycle cost in order to select best combination of thermal insulation materials as per requirement.
机译:本文报道用于的寿命周期成本的基础上,住宅建筑物的墙壁的两个热绝缘材料的组合分析最佳厚度的方法。用于实现相反目的的两个热绝缘材料可以是用作在许多应用例如溶液如果加入耐火材料与发泡聚苯乙烯(EPS),以提高其阻燃性能,其导热系数的增加,其中,如同我们选择玻璃棉作为隔热材料具有较高的热导率,但更好的耐火,因此,如果我们希望实现以低成本更好的耐火性高的耐热性,我们可以代替单个隔热材料的两个热绝缘材料的组合的使用。为了确定用于两个热绝缘材料的组合最佳厚度有必要开发一种方法,通过它为的寿命周期成本的基础上,两个热绝缘材料的不同组合最佳绝缘厚度可以被分析。为了研究最佳的热绝缘厚度提出的方法一个热绝缘部分的作用在加热的应用被应用到住宅建筑物外壳的绝缘。外壁。开发总成本的目标函数分析了表面图的帮助。为了应用该方法发达EPS和玻璃棉被认为是热绝缘材料。通过对两种热绝缘材料的组合这种方式最佳厚度可以的寿命周期成本的基础上,以选择热绝缘材料按规定的最佳组合进行分析。

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