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PCMs for Residential Building Applications: A Short Review Focused on Disadvantages and Proposals for Future Development

机译:用于住宅建筑的PCM:简短回顾,重点关注未来发展的缺点和建议

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Phase change materials (PCMs) offer great potential as a latent heat energy storage technique to provide energy efficient systems in new and existing residential buildings. Due to their unique characteristic of high storage densities and latent heat properties, PCMs provide opportunities for greater energy storage in many applications for residential buildings. These applications include, but are not limited to, solar water heating, space heating/cooling, and waste heat recovery. This study reviews PCM systems in residential building applications, with a focus on their major disadvantages and concludes with proposals for future development. Several disadvantages of PCM use in the given application have been identified and include; super cooling, low thermal conductivity, phase segregation, fire safety, and cost. The issues caused by super cooling and phase segregation lead to thermal cycling degradation, limiting the useful lifecycle of the material. These issues could limit their potential in building applications, which require systems of a long lifespan. Low thermal conductivities can slow down the rate at which heat is distributed or absorbed from the building, which affect the occupants comfort and as well as the efficiency of the system. Ideas based on the current research on ways to limit these disadvantages are included in the study. This study also identifies that further research is required on novel maintenance ways for the PCM systems after they have been installed.
机译:相变材料(PCM)作为潜热能量存储技术具有巨大的潜力,可以在新的和现有的住宅建筑中提供节能的系统。由于其独特的高存储密度和潜热特性,PCM在许多住宅建筑应用中提供了更大的能量存储机会。这些应用包括但不限于太阳能热水,空间加热/冷却和废热回收。这项研究回顾了PCM系统在住宅建筑中的应用,重点是它们的主要缺点,并提出了未来发展的建议。在给定的应用中使用PCM的几个缺点已被发现,包括:过冷,低导热系数,相分离,防火安全和成本。由过冷和相分离引起的问题导致热循环退化,限制了材料的使用寿命。这些问题可能会限制其在构建应用程序中的潜力,而这需要使用寿命长的系统。低的热导率会减慢热量从建筑物中散发或吸收的速度,这会影响居住者的舒适度以及系统的效率。该研究包括基于当前研究方法的思想,以限制这些弊端。这项研究还确定,在PCM系统安装后,需要对新颖的维护方式进行进一步的研究。

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