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Investigation of the thermal performance of coconut fibre composite with aluminium reflector cooling roofs

机译:铝制反射器冷却屋顶椰子纤维复合材料的热性能研究

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Global warming and depletion of petroleum resources have made the scientists to focus on new passive cooling techniques to reduce the indoor temperature of residential and commercial buildings. This paper explores the benefits of using coconut fibre composite as a passive cooling roof and quantifies those benefits in terms of heat flow changes through field experiment and compares them to the base case of standard roof in arid regions. The research also focussed on the usage of this material in combination with radiation reflectors such as aluminium and the effect of air gap between coconut fibre composite and aluminium reflector on the energy efficiency of the buildings. Experimental investigation showed a substantial reduction in room air and concrete roof slab temperature of coconut fibre composite with aluminium reflector room in comparison with the conventional roof. A maximum reduction of 5.99 degrees C (16.59%) and 8.39 degrees C (23.8%) were observed in room air and roof slab temperature of coconut fibre composite-aluminium roof with an air gap of 40 cm between them. It was also observed that as the air gap between coconut fibre composite and aluminium reflector is increased, the room air and roof slab temperature were reduced due to enhanced convective cooling. Compared to a standard roof, the indoor air temperature of coconut fibre composite roof was reduced by a maximum of 2.2 degrees C (5.86%), 2.9 degrees C and 5.99 degrees C (16.59%) for 0, 20 and 40 cm air gap between the coconut fibre composite and aluminium reflector, respectively. It is convincingly demonstrated that the coconut fibre composite roof with aluminium reflector can significantly affect the indoor air and roof surface temperature of the roofs during the hot summer days.
机译:全球变暖和石油资源枯竭使得科学家们致力于新的被动冷却技术,以降低住宅和商业建筑的室内温度。本文探讨了使用椰子纤维复合材料作为被动冷却屋顶的好处,并通过现场实验量化了这些热量带来的热流变化,并将其与干旱地区标准屋顶的基本情况进行了比较。研究还集中在这种材料与铝等辐射反射器的结合使用上,以及椰子纤维复合材料和铝反射器之间的气隙对建筑物能源效率的影响。实验研究表明,与常规屋顶相比,带有铝质反射器的椰子纤维复合材料的室内空气和混凝土屋顶板温度大大降低。椰子纤维复合铝屋顶的室内空气和屋顶板温度之间的最大间隙分别为5.99摄氏度(16.59%)和8.39摄氏度(23.8%),最大降低量之间。还观察到,随着椰子纤维复合材料和铝反射器之间的气隙增加,由于增强的对流冷却,室内空气和屋顶板的温度降低。与标准屋顶相比,椰子纤维复合材料屋顶的室内空气温度在0、20和40厘米之间的空气间隙最多降低了2.2摄氏度(5.86%),2.9摄氏度和5.99摄氏度(16.59%)。分别是椰子纤维复合材料和铝反射器。令人信服地证明,在炎热的夏季,带有铝质反射器的椰子纤维复合材料屋顶会显着影响屋顶的室内空气和屋顶表面温度。

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