首页> 外文期刊>Proceedings of the National Academy of Sciences, India, Section A. Physical Sciences >Smart Materials Selection for Thermal Energy Efficient Architecture
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Smart Materials Selection for Thermal Energy Efficient Architecture

机译:智能材料选择热能有效的体系结构

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abstract_textpEnergy crisis and increasing demand for green energy to acute pollution has forced the engineers, architects and scientists to adapt green materials for structural applications. In this context, conventional building materials are extensively investigated using life cycle estimations, thermodynamic models, CO2 emissions, and energy demands and many other criteria. Selection of smart materials for thermal energy efficient architecture on the bases of various thermo-physical properties (density (), thermal conductivity (K) and specific heat capacity (C-p)) in relation to the engineering requirements (energy stored (Q(S)), energy density (Q), rate of heat transfer (q), utilization factor () and mechanical load) is a crucial as well as a tedious task. In this context, we have employed quality function deployment (QFD) in combination with VlseKriterijumska Optimisacija I Kompromisno Resenje (VIKOR) technique to determine the ranks and rank indices (degree of closeness) of important materials. The weights of thermo-physical properties of materials for hot (: 17.72%; C-p: 45.14%; K: 37.14%) and cold weather (: 29.32%; C-p: 65.42%; K: 5.26%) applications are depicted using QFD. Our results enlighten that low conductivity materials should be preferred for hot areas applications while for cold areas the scenario is reversed. Furthermore, wood and asphalt sheet are found to be the best materials for hot and cold areas, respectively./p/abstract_text
机译:& abstract_text & p能源危机急性对绿色能源的需求越来越大污染迫使工程师、建筑师和科学家适应绿色材料结构的应用程序。传统的建筑材料很广泛使用生命周期调查估计,热力学模型、二氧化碳排放量和能源和许多其他标准的要求。智能材料的热能源效率建筑在不同的基地热物理性质(密度),热电导率(K)和比热容(c p))与工程需求(能源存储(Q (S))密度(Q),传热率(Q),利用系数()和机械负载)关键以及单调乏味的任务。环境中,我们使用了质量功能部署(QFD)结合Resenje (VIKOR)技术来确定和等级指数(亲密度)重要的材料。热物理性能的材料热(: 17.72%;天气:29.32%;应用程序使用的质量功能展开描述。启发,低电导率材料而对于是热门领域的首选应用程序寒冷地区的情况正好相反。木头和沥青表被发现是最好的材料热的和冷的地区,分别。;/ p & / abstract_text

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