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Development of polyurethane foam incorporating phase change material for thermal energy storage

机译:包含用于热能存储的相变材料的聚氨酯泡沫的开发

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The major aim of the present study is to improve the thermal characteristics of polyurethane foams (PUFs) that have been almost exclusively used for thermal insulation purposes but can also play a role in potential thermal energy storage components as a matrix material.To overcome the low thermal conductivity of the of PUFs matrix, a synthesized phase change material (PCM) based on paraffin and calcium carbonate (CaCO3) has been developed to enhance the thermal conductivity and thus achieve a more effective charging and discharging process. The synthesized PCM (PCM@CaCO3) exhibited a good phase change performance with significant thermal storage capacity and thermal stability compared to commercial based PCM (PCM@BASF).Different PUFs formulations incorporating PCM (PCM@CaCO3 and PCM@BASF) were used to produce PUFs panels (rigid and soft PUFs panels). The thermal conductivity of the PUFs panels was measured using the transient plane heat source method (HotDisk Analyser, TPS 2500 S) and the thermal flux metre method (steady-state method). The results obtained revealed that, regardless of the method used, the thermal conductivity profile has a similar increasing trend before and after the bounds of the PCM phase change transition zone, whilst during PCM phase transition both methods showed a decreasing trend of the thermal conductivity as the temperature increased.In addition, this work presents and discusses the limitation of the HotDisk method to analyse panels composed by multilayers.
机译:本研究的主要目的是改善聚氨酯泡沫(PUF)的热特性,这些聚氨酯泡沫几乎专门用于绝热目的,但在作为基质材料的潜在热能存储组件中也可以发挥作用。 PUFs基质的热导率已经开发出来,基于石蜡和碳酸钙(CaCO3)的合成相变材料(PCM)可以提高热导率,从而实现更有效的充电和放电过程。与市售的PCM(PCM @ BASF)相比,合成的PCM(PCM @ CaCO3)具有良好的相变性能,具有显着的储热能力和热稳定性。生产PUF面板(刚性和软PUF面板)。使用瞬态平面热源方法(HotDisk Analyser,TPS 2500 S)和热通量仪方法(稳态方法)测量PUFs面板的导热率。获得的结果表明,无论使用哪种方法,在PCM相变过渡区的边界之前和之后,热导率曲线都有相似的增加趋势,而在PCM相变过程中,两种方法都显示出导热率的下降趋势,即此外,这项工作提出并讨论了HotDisk方法在分析由多层组成的面板时的局限性。

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