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An experimental study on using polyethylene glycol (PEG) 600 as phase change material for thermal comfort and energy saving in buildings

机译:聚乙二醇(PEG)600作为相变材料在建筑物中热舒适和节能的相变材料的实验研究

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The building sector is one of the sectors where energy consumption has been expanding consistently to achieve 20-40% of the aggregate energy use in most countries. Thermal energy storage (TES) with phase change materials (PCM) is valuable technique for enhancing energy proficiency of a building by lessening the mismatch amongst supply and demand of heat or cold. This paper aims to investigate thermal comfort and energy saving in buildings by incorporating polyethylene glycol (PEG) 600 as phase change material with concrete. A concrete PCM system which is located in Khartoum, Sudan was used to study the thermal behavior of a building in response to outdoor environmental exposure. The concrete PCM ceiling system is consisted of two models; one with PCM and the other without PCM. The experimental analysis was done with and without present of fan in the concrete model with PCM. The results showed that the model with PCM could reduce the peak temperature with and without using fan by 4 °C and 1 °C respectively. The results additionally demonstrated that PCM could improve the storage of thermal mass of concrete about 6 times. The heat capacity and high density of concrete integrated with latent heat storage of PCM provides an energy saving concepts for sustainable built environment.
机译:建筑业是该部门之一,能源消耗一直扩大,以达到大多数国家的20-40%的总能源。具有相变材料(PCM)的热能存储(TES)是通过减少热或冷的供需中的不匹配来提高建筑物能量熟练的宝贵技术。本文旨在通过将聚乙二醇(PEG)600作为混凝土的相变材料来研究建筑物的热舒适和节能。苏丹喀土穆的一个具体PCM系统用于研究建筑物的热行为,以应对户外环境暴露。混凝土PCM天花板系统由两种型号组成;一个与PCM和另一个没有PCM。使用PCM在混凝土模型中使用风扇的实验分析进行了实验分析。结果表明,PCM的模型可以分别使用4°C和1°C的峰值温度和不使用风扇的峰值温度。结果另外表现出PCM可以改善混凝土热质量的储存约6倍。与PCM的潜热储存集成的混凝土的热容和高密度为可持续建筑环境提供了节能概念。

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