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Development of a Composite Laminated Phase Change Material (PCM) for Energy Storage in Buildings

机译:开发复合层压相变材料(PCM),用于建筑物中的储能

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In this paper experimental studies have been undertaken towards the development of a laminated composite aluminium/hexadecane PCM material based on previous analytical work. The study also covered the selection and testing of various types of adhesive materials and found PVA material as the most appropriate bonding material. For the purpose of comparison two sets of samples using pure Hexadecane and the composite Aluminium/hexadecane were developed and tested. The test results revealed faster thermal response by the aluminium/hexadecane sample regarding the rate of heat flux and also achieved about 40% and 15% heat transfer enhancements during the charging and discharging periods respectively. There was however about 5% less total cumulative thermal energy discharged at the end of the test which indicates that its effective thermal capacity was reduced by the presence of the aluminium particles. The study has shown that some of the scientific and technical barriers associated with the development of laminated composite PCM systems can be overcome but further investigations are needed to reduce the effects of the thermophysical properties of the adhesive which may have affected the overall thermal performance of the sample.
机译:在本文的实验研究已经进行对基于先前的分析工作层叠复合的铝/十六烷PCM材料的发展。该研究还覆盖选择和各种类型的粘合剂材料中的测试,发现PVA材料为最合适的接合材料。为比较两组用纯十六烷和复合铝样本的目的/十六烷进行了开发和测试。试验结果表明由铝/十六烷关于样品的热通量的速率和过程中分别充电和放电周期也实现了约40%和15%的热传递增强快的热响应。有然而约5%在试验结束时排出的较少的总的累积的热能这表明它的有效热容量降低了的铝粒子的存在。研究表明,一些与复合材料层合PCM系统的发展相关的科学和技术障碍是可以克服的,但还需要进一步的调查,以减少可能影响的整体散热性能的胶粘剂的热物理性能的影响样本。

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