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Performance Assessment of Sustainable Composite Roofing Assemblies Using Experimentation

机译:可持续复合屋面组件性能评估

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Over the hot climatic zones all buildings which have roof directly exposed to sun imparts significant heat gain inside the buildings. The problem of excessive cooling demand inside the building can significantly be addressed using reflecting and insulating materials as a retrofitting solution. The present paper elaborates application of sustainable reflecting-cum-insulating (R-I) materials over the flat concrete roof surface for reducing the impact of heat gain inside the buildings. The composite R-I assemblies used for thermal performance assessment includes aluminum sheet, broken glazed tiles, expanded polystyrene (construction waste), sawdust (industrial waste), mineral fiber board (recycled content 38%) and false ceiling panels (recycled content 90%). These materials were placed in two different combinations as a composite heat barrier assembly for exposed concrete roof of the two model rooms in an educational building over the considered geographic location. In comparison to the untreated concrete slab, the applied composite R-I assemblies resulted in an overall increase in thermal resistance of the first and second assembly by 1.9 and 3.9 times respectively. Over a period of a year under experimentation, the first and second retrofitted assembly resulted in 6% and 19% reduction in surface temperature respectively. The considered R-I materials for the experimentation have proved to be thermally efficient, lighter and cost effective solution for energy conservation inside the buildings. The R-I product can further be applied on larger roof areas by the designers to reduce the cooling load of the built environment as well as increase the occupants comfort over the local climatic zone.
机译:在炎热的气候带上,所有屋顶直接暴露在阳光下的建筑物都会在建筑物内部产生大量的热量。使用反射和隔热材料作为改型解决方案,可以显着解决建筑物内部过度制冷需求的问题。本文详细阐述了在平坦的混凝土屋顶表面上应用可持续反射兼隔热(R-I)材料的方法,以减少建筑物内部热量吸收的影响。用于热性能评估的复合R-I组件包括铝板,破碎的琉璃瓦,膨胀的聚苯乙烯(建筑垃圾),木屑(工业垃圾),矿物纤维板(可回收含量38%)和假顶板(可回收含量90%)。这些材料以两种不同的组合形式放置,作为复合隔热板组件,用于考虑地理位置上教育大楼中两个样板房的裸露混凝土屋顶。与未处理的混凝土板相比,所施加的复合R-I组件导致第一组件和第二组件的总热阻分别分别增加1.9倍和3.9倍。经过一年的试验,第一次和第二次改装后的组件分别使表面温度降低了6%和19%。被认为是用于实验的R-1材料已证明是建筑物内节能的热效率高,重量轻且具有成本效益的解决方案。设计人员可以将R-I产品进一步应用于较大的屋顶区域,以减少建筑环境的制冷负荷,并在当地气候区域内增加乘员的舒适度。

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