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Numerical investigation of thermal and optical performance of window units filled with nanoparticle enhanced PCM

机译:纳米颗粒增强PCM填充窗单元热和光学性能的数值研究

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摘要

Filling window units with phase change material (PCM) improves the thermal performance of windows, but on the other hand it has a deteriorative effect on the optical performance due to poor heat conductivity of PCM. A novel method to tackle this drawback of PCM is to disperse nanoparticles in the PCM. In this study, a model was developed to evaluate the thermal and optical performances of window units filled with nanoparticle enhanced PCM (NePCM). The effect of different types of nanoparticles, volume fractions of nanoparticles and sizes of nanoparticles on the thermal and optical performances of windows such as temperature, heat flux, solar transmittance, absorptance and reflectance were numerically investigated and compared with the referent case (i.e. pure PCM). The results showed that the optical and thermal performances of window units filled with nanoparticle dispersed paraffin wax are improved compared to that of with pure paraffin. However, the improvement is nearly the same regardless of nanoparticle type. The effect of volume fraction and size of nanoparticle is significant during the sunset and sunrise periods. Considering both thermal and optical performances of window units, it is recommended to disperse CuO nanoparticles with the volume fraction of below 1% and nanoparticle size of below 15 nm in PCM.
机译:用相变材料(PCM)填充窗户单元可以改善窗户的热性能,但另一方面,由于PCM的导热性差,它对光学性能有不利影响。解决PCM这一缺点的新方法是将纳米颗粒分散在PCM中。在这项研究中,开发了一个模型来评估装有纳米颗粒增强PCM(NePCM)的窗户单元的热性能和光学性能。数值研究了不同类型的纳米粒子,纳米粒子的体积分数和纳米粒子的尺寸对窗户的热和光学性能(如温度,热通量,太阳透射率,吸收率和反射率)的影响,并与参考案例(即纯PCM)进行了比较。 )。结果表明,与纯石蜡相比,纳米粒子分散石蜡填充的窗单元的光学和热性能有所改善。但是,无论纳米粒子的类型如何,其改善几乎都是相同的。纳米粒子的体积分数和尺寸的影响在日落和日出期间很明显。考虑到窗单元的热性能和光学性能,建议在PCM中分散体积分数小于1%且纳米颗粒尺寸小于15μnm的CuO纳米颗粒。

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