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Building bricks with phase change material (PCM): Thermal performances

机译:建筑砖与相变材料(PCM):热性能

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摘要

In certain Moroccan regions, weather conditions are extreme; the outside ambient temperature varies between 45 degrees C during the day and 25 degrees C at night in the estival period. Under such conditions, residential and tertiary buildings, which have lightweight walls, may be vulnerable to internal overheating. Heat waves penetrating the building lead to occupant's discomfort and dissatisfaction. Creating an internal climate, which is independent or slightly dependent on external conditions, can be an appropriate solution to mitigate temperature fluctuations. The adoption of new approaches to improve the thermal inertia of lightweight walls is currently among the most widely accepted techniques in literature. In this study, the integration of phase change material (PCM) in building hollow bricks (widely used in Morocco construction) is proposed to improve the thermal performance of external walls. High latent heat of fusion of PCMs will help to dampen the heat flow through the envelope. Physical modeling and numerical analysis of heat transfer through the hollow bricks containing PCM has been carried out. A parametric study was conducted to evaluate the effect of weather conditions on the thermal response of this building element, also the influence of PCM properties are studied and discussed. It is found that the use of PCM in building bricks stabilizes and reduces the indoor temperature fluctuation. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在某些摩洛哥地区,天气条件是极端的;外部环境温度在白天在45摄氏度之间变化,在estival时段的夜间晚上C。在这种情况下,有轻质墙壁的住宅和三级建筑可能很容易受到内部过热的影响。热浪透过建筑物导致占用者的不适和不满。创建内部气候,独立或略微依赖外部条件,可以是缓解温度波动的适当解决方案。采用新方法改善轻质墙体的热惯性,目前是文学中最广泛接受的技术之一。在这项研究中,提出了在建筑空心砖(广泛应用于摩洛哥建筑)中的相变材料(PCM)的集成,以提高外墙的热性能。 PCM融合的高潜热将有助于抑制通过信封的热流。通过PCM的空心砖进行了物理建模和传热的数值分析。进行了参数研究以评估天气条件对该建筑元素热响应的影响,还研究了PCM性能的影响和讨论。发现PCM在建筑物砖中使用稳定并降低室内温度波动。 (c)2020 elestvier有限公司保留所有权利。

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