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Thermal Performance of Mortars Based on Different Binders and Containing a Novel Sustainable Phase Change Material (PCM)

机译:基于不同粘合剂并包含新型可持续相变材料(PCM)的砂浆的热性能

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摘要

Increasing concerns about climate change and global warming bring about technical steps for the development of several energy-efficient technologies. Since the building sector is one of the largest energy users for cooling and heating necessities, the incorporation of a proper energy-efficient material into the building envelopes could be an interesting solution for saving energy. Phase change material (PCM)-based thermal energy storage (TES) seems suitable to provide efficient energy redistribution. This is possible because the PCM is able to store and release its latent heat during the phase change processes that occurs according to the environmental temperature. The purpose of this paper was the characterization of the thermal properties of a composite PCM (i.e., Lecce stone/poly-ethylene glycol, previously developed) incorporated into mortar compositions based on different binders (i.e., hydraulic lime and cement). The study was carried out using an experimental set up through which it was possible to simulate the different seasons of the years. It was observed that the addition of PCM in mortars leads to a decrease of the maximum temperatures and increase of the minimum temperatures. Furthermore, the results shown a reduction of the heating and cooling needs, thus confirming the capability of this material to save energy.
机译:对气候变化和全球变暖的日益关注为开发几种节能技术带来了技术步骤。由于建筑行业是制冷和供暖必需品的最大能源用户之一,因此在建筑围护结构中加入适当的节能材料可能是节省能源的有趣解决方案。基于相变材料(PCM)的热能存储(TES)似乎适合提供有效的能量重新分配。这是可能的,因为PCM能够在根据环境温度发生的相变过程中存储和释放其潜热。本文的目的是表征掺入基于不同粘合剂(即水硬性石灰和水泥)的砂浆组合物中的复合PCM(即以前开发的莱切石/聚乙二醇)的热性能。该研究是使用实验装置进行的,通过该装置可以模拟年份的不同季节。可以看出,在砂浆中添加PCM会导致最高温度降低和最低温度升高。此外,结果表明减少了加热和冷却需求,从而证实了这种材料节省能源的能力。

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