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Energy efficient concrete with n-octadecane/xGnP SSPCM for energy conservation in infrastructure

机译:具有n-十八烷/ xGnP SSPCM的节能混凝土,可用于基础设施的节能

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Among the preparation methods of shape-stabilized PCMs (SSPCMs), incorporation of a PCM into construction materials has been proposed as a passive means of decreasing the overall heating and cooling demand of a building. PCMs can be incorporated in a variety of construction materials, such as gypsum plaster boards, concrete and plaster. In this study, we prepared concrete with a high heat storage property by using n-octadecane based SSPCM for application to building. The prepared SSPCM was applied to the concrete as a fine aggregate because its shape is grain type. Then we prepared the SSPCM concrete by compositing SSPCM to concrete. The physical property of SSPCM concrete was analyzed density analysis. And thermal properties of the SSPCM concrete were analyzed by differential scanning calorimeter (DSC), enthalpy analysis and thermogravimetric analysis (TGA). Finally, we carried out dynamic heat transfer analysis of the SSPCM concrete for evaluation of peak temperature reduction time lag effect of the prepared samples. From this research, we confirmed the high thermal properties and possibility to apply SSPCM concrete to heat storage structures and various other fields. We expect SSPCM concrete would be useful in heat storage building materials and to establish a heat storage structure for enhancing thermal efficiency. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在形状稳定的PCM(SSPCM)的制备方法中,已经提出将PCM掺入建筑材料中作为降低建筑物总体供暖和制冷需求的被动手段。 PCM可以掺入各种建筑材料中,例如石膏灰泥板,混凝土和灰泥。在这项研究中,我们通过使用基于正十八烷的SSPCM制备了具有高储热性能的混凝土,并将其用于建筑。所制备的SSPCM以细骨料形式应用于混凝土,因为其形状为颗粒状。然后我们通过将SSPCM混合到混凝土中来制备SSPCM混凝土。对SSPCM混凝土的物理性能进行了密度分析。通过差示扫描量热仪(DSC),热函分析和热重分析(TGA)对SSPCM混凝土的热性能进行了分析。最后,我们对SSPCM混凝土进行了动态传热分析,以评估所制备样品的峰值降温时间滞后效应。通过这项研究,我们确认了高热性能以及将SSPCM混凝土应用于储热结构和其他各个领域的可能性。我们期望SSPCM混凝土将在蓄热建筑材料中有用,并建立一种蓄热结构以提高热效率。 (C)2015 Elsevier Ltd.保留所有权利。

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