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Research paper Development of sunlight-driven eutectic phase change material nanocomposite for applications in solar water heating

机译:研究论文在太阳能热水中应用的阳光驱动共晶相变材料纳米复合材料的开发

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Organic phase change materials (PCMs) have been utilized as latent heat energy storage medium for effective thermal management. In this work, a PCM nanocomposite, consisting of a mixture of two organic PCMs (referred to as eutectic gel PCM) and minimal amount (0.5?wt%) of nanographite (NG) as a supporting material, was prepared. Differential scanning calorimeter was used to determine the melting temperature and latent heat of pristine PCM, paraffin (61.5?°C and 161.5?J/g), eutectic gel PCM (54?°C and 158?J/g) and eutectic gel PCM nanocomposite (53.5?°C and 155?J/g). The prepared PCM nanocomposites exhibited enhanced thermal conductivity and ultrafast thermal charging characteristics. The nanocomposites were employed for two different applications: (i) providing hot water using an indigenously fabricated solar water heating (SWH) system and (ii) solar rechargeable glove that can be rapidly warmed and used. Experimental results on SWH system show that the use of PCM nanocomposites helps to increase the charging rate of PCM while reducing the discharging rate of heat by PCM to water, thus enhancing the maximum utilization of solar energy and hence improving the efficiency of the SWH system. The experimental results on solar rechargeable glove revealed that the glove has the ability to retain the temperature up to 3 hours.
机译:有机相变材料(PCM)已被用作潜热能量存储介质,以进行有效的热管理。在这项工作中,制备了一种PCM纳米复合材料,该复合材料由两种有机PCM(称为共晶凝胶PCM)和少量(0.5%(重量))的纳米石墨(NG)的混合物组成。用差示扫描量热仪测定原始PCM,石蜡(61.5?C和161.5?J / g),低共熔胶PCM(54?C和158?J / g)和低共熔PCM的熔化温度和潜热。纳米复合材料(53.5?C和155?J / g)。制备的PCM纳米复合材料表现出增强的导热性和超快的热充电特性。纳米复合材料被用于两种不同的应用:(i)使用本地制造的太阳能热水(SWH)系统提供热水,以及(ii)可以快速加热和使用的太阳能可充电手套。在SWH系统上的实验结果表明,使用PCM纳米复合材料有助于提高PCM的充电率,同时降低PCM对水的放热率,从而提高了太阳能的最大利用率,从而提高了SWH系统的效率。在太阳能可充电手套上的实验结果表明,该手套能够将温度保持长达3个小时。

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