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Phase change material (PCM) incorporated bricks for energy conservation in composite climate: A sustainable building solution

机译:相变材料(PCM)组合砖,用于复合气候中的节能:可持续的建筑解决方案

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摘要

Sun is a perennial source of energy and utilization of this energy for building energy conservation can be a turning point in the energy saving potential of buildings. With Indian population crossing 1.3 billion, there is a need to utilize solar energy to deal with space and resource constraints. The buildings in urban areas are therefore exploring and integrating different passive techniques to conserve energy. One method of improving the energy efficiency aspects of a building would be to increase the thermal mass of the building elements by incorporating phase change materials (PCMs) within the building envelope thereby, reducing the temperature fluctuation and peak temperature within.This study discusses the competence of using PCMs for building energy conservation through their large heat storage capacities in the climatic conditions of Delhi. The aim is to experimentally study the impact of PCM incorporated bricks, assessing the change in temperature difference and heat flow across the same. Analytically for the climatic conditions of Delhi, thermally mapped Eicosane and OM35 are found suitable. These two PCMs are then experimentally characterised, to determine their melting-solidification characteristics, using differential scanning calorimeter (DSC). The results also reiterated the suitability of Eicosane and OM35. Further, the PCM incorporated bricks are tested under real conditions during peak summer (third week of May-2018). A temperature reduction of 5-6 degrees C across the bricks with respect to conventional brick was observed. Energy calculations showed reduction in heat flow by 8% and 12% for Eicosane and OM35 respectively.
机译:太阳是常年的能源,利用这种能量进行建筑节能可以成为建筑物节能潜力的转折点。随着印度人口超过13亿,有必要利用太阳能来应对空间和资源的限制。因此,城市地区的建筑物正在探索和整合各种被动技术以节约能源。改善建筑物能效方面的一种方法是通过在建筑物围护结构内结合相变材料(PCM)来增加建筑物构件的热质量,从而减少建筑物内的温度波动和峰值温度。通过在德里的气候条件下利用PCM的巨大储热能力来实现建筑节能。目的是通过实验研究掺入PCM的砖的影响,评估温度差的变化以及跨砖的热流。从德里的气候条件分析,发现热成像的二十烷和OM35是合适的。然后,使用差示扫描量热仪(DSC)对这两个PCM进行实验表征,以确定其熔融凝固特性。结果还重申了Eicosane和OM35的适用性。此外,在夏季高峰期(2018年5月的第三周)内,在实际条件下对结合PCM的砖块进行了测试。观察到相对于常规砖,整个砖的温度降低了5-6℃。能源计算显示,二十烷和OM35的热流分别减少了8%和12%。

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