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Latent and sensible heat analysis of PCM incorporated in a brick for cold and hot climatic conditions, utilizing computational fluid dynamics

机译:利用计算流体动力学,对在寒冷和炎热气候条件下掺入砖中的PCM进行潜热和显热分析

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Thermal energy storage is a key issue in efficient energy systems applications. In this regard, phase changing material (PCM) has been of interest as a passive solution for efficient energy management, especially in buildings. This paper presents a thermal analysis of a brick, which includes a particular type of PCM and ten air cavities, so as to be utilized in building envelop system. The objective of current study is to reduce heat transfer from outdoor-to-indootspace-and-vice versa-by-investigating-latent-and-sensible heat storage through the PCM. Eventually, the fluctuations of indoor and outdoor air are analyzed in both the coldest and hottest days of Tehran in 2016. Computational fluid dynamics (CFD) was performed to estimate the behavior of the confined PCM while exposed to the external time-dependent conditions. The results indicated that in the summer heat storage was conducted mostly via latent heat, while in winter the thermal storage was mainly made up of sensible heat. However, in both the summer and winter, PCM could be incorporated in buildings envelop systems in order to operate as a passive indoor thermo-regulator. (C) 2018 Elsevier Ltd. All rights reserved.
机译:热能存储是高效能源系统应用中的关键问题。在这方面,相变材料(PCM)作为有效能源管理的被动解决方案已引起人们的关注,尤其是在建筑物中。本文介绍了一种砖的热分析,该砖包括一种特定类型的PCM和十个气孔,以便用于建筑围护系统。当前研究的目的是通过研究通过PCM的潜热和显热储能来减少从室外到室内空间的热传递,反之亦然。最终,在2016年德黑兰最冷和最热的日子里,分析了室内和室外空气的波动。进行了计算流体动力学(CFD)来估算受限PCM在暴露于外部时间依赖性条件下的行为。结果表明,夏季储热主要通过潜热进行,而冬季储热主要由显热组成。但是,在夏季和冬季,都可以将PCM集成到建筑物围护系统中,以用作被动式室内温度调节器。 (C)2018 Elsevier Ltd.保留所有权利。

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