首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >A foamed cement blocks with paraffin/expanded graphite composite phase change solar thermal absorption material
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A foamed cement blocks with paraffin/expanded graphite composite phase change solar thermal absorption material

机译:具有石蜡/膨胀石墨复合相变太阳热吸收材料的发泡水泥块

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When solar radiation reaches its peak value during the midday, buildings' external walls absorb the highest amount of heats and result in dramatic spikes in cooling load and energy consumption. To flatten the energy peak, promote energy efficiency, and preserve thermal comfort, this study developed a novel foamed thermal insulation cement block with extraordinary heat storage capacity. To prepare the proposed foamed cement block, a paraffin/expanded graphite composite phase change heat storage material with a phase transition temperature of 41.9 degrees C and an enthalpy value of 207.8 J/g was used to load paraffin into expanded graphite in a water bath at 44 degrees C. After mixing the paraffin/expanded graphite composite phase change material (PCM) with cement, foams were added, stirred and poured into the mold to make a novel foaming cement thermal insulation block. Due to its porous structure, the foamed cement has lightweight as well as high heat preservation capacity. To investigate the characteristics of the proposed material, this investigated its physical structure, thermal conductivity, and heat energy storage performance when the material mass fractions of PCM are 10%, 15%, 20%, 25% and 30%, and regular (pure) cement blocks. The experimental results show that there is no chemical reaction during material preparation. In addition, composite materials' PCM mass fraction and their thermal storage capacity increase simultaneously. The comprehensive analysis shows that foamed cement blocks with 30% PCM contents have the best thermal energy storage performance and can maintain the lowest average indoor temperature. Therefore, the proposed foamed cement blocks can be applied to building outer surfaces and sandwiched middle enclosures to develop energy efficiency insulation walls.
机译:当太阳辐射在午间期间达到其峰值时,建筑物的外墙吸收最高量的热量,并导致冷却负荷和能耗中的戏剧性尖峰。为了使能源峰值平整,促进能效,并保持热舒适度,这项研究开发了一种具有非凡储热容量的新型发泡热绝缘水泥块。为了制备所提出的泡沫水泥块,使用相转变温度为41.9℃的石蜡/膨胀石墨复合相变储存材料和207.8J / g的焓值将石蜡加载到水浴中的膨胀石墨中在将石蜡/膨胀的石墨复合相变材料(PCM)与水泥混合后,加入泡沫,搅拌并倒入模具中以制造新型发泡水泥绝热块。由于其多孔结构,泡沫水泥具有轻质和高保温能力。为了研究所提出的材料的特性,当PCM的材料质量分数为10%,15%,20%,25%和30%时,调查其物理结构,导热性和热能存储性能,以及常规(纯净)水泥块。实验结果表明,材料制备期间没有化学反应。另外,复合材料的PCM质量分数及其热存储容量同时增加。综合分析表明,具有30%PCM内容物的发泡水泥块具有最佳的热能存储性能,可以保持最低的平均室内温度。因此,所提出的泡沫水泥块可以应用于构建外表面和夹层的中间外壳,以开发能效绝缘壁。

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