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Review of passive PCM latent heat thermal energy storage systems towards buildings' energy efficiency

机译:被动式PCM潜热蓄热系统对建筑节能的回顾

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This paper aims to explore how and where phase change materials (PCMs) are used in passive latent heat thermal energy storage (LHTES) systems, and to present an overview of how these construction solutions are related to building's energy performance. A survey on research trends are firstly presented followed by the discussion of some physical and theoretical considerations about the building and the potential of integrating PCMs in construction elements. The different types of PCMs and main criteria that govern their selection are reviewed, as well as the main methods to measure PCMs' thermal properties, and the techniques to incorporate PCMs into building elements. The numerical modeling of heat transfer with phase-change and heat transfer enhanced techniques are discussed, followed by a review of several passive LHTES systems with PCMs. Studies on dynamic simulation of energy in buildings (DSEB) incorporating PCMs are reviewed, mainly those supported by EnergyPlus, ESP-r and TRNSYS software tools. Lifecycle assessments, both environmental and economic are discussed. This review shows that passive construction solutions with PCMs provide the potential for reducing energy consumption for heating and cooling due to the load reduction/shifting, and for increasing indoor thermal comfort due to the reduced indoor temperature fluctuations.
机译:本文旨在探讨相变材料(PCM)在被动式潜热热能存储(LHTES)系统中的使用方式和位置,并概述这些建筑解决方案与建筑物的能源性能之间的关系。首先介绍了研究趋势,然后讨论了有关建筑物的一些物理和理论考虑以及将PCM集成到建筑元素中的潜力。审查了PCM的不同类型和决定其选择的主要标准,以及测量PCM热性能的主要方法,以及将PCM纳入建筑元素的技术。讨论了利用相变和传热增强技术进行传热的数值模型,然后回顾了几种带有PCM的无源LHTES系统。综述了结合PCM的建筑物中能量动态模拟(DSEB)的研究,主要是由EnergyPlus,ESP-r和TRNSYS软件工具支持的研究。讨论了环境和经济的生命周期评估。这项审查表明,采用PCM的被动式建筑解决方案具有减少负荷/转移引起的供暖和制冷能耗降低的潜力,并由于减少了室内温度波动而具有提高室内热舒适性的潜力。

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