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Study on building surface and indoor temperature reducing effect of the natural meso-porous material to moderate the indoor thermal environment

机译:天然介孔材料在建筑表面和室内降温对缓和室内热环境的影响的研究

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摘要

This paper aims to investigate the performance of several reflective and evaporative wall coatings, to determine the most effective one to moderate the indoor thermal environment. Eight reflective coatings with different colours and characteristics were selected. For the evaporative coating, three different samples with Wakkanai siliceous shale (WSS) particle; small, medium, large and silica gel type B were produced in the laboratory and another WSS mortar previously developed in the laboratory were selected. At first, an uncoated concrete, reflective coatings and WSS mortar, as a representative of evaporative group, coated blocks were experimented in the chamber under simple boundary conditions. The minimum value of outdoor and indoor surface temperature was recorded for the white uneven coating and white dirt resistant coating that can reduce the outdoor and indoor surface temperature by 6.9 degrees C and 1.9 degrees C respectively. The result of steady state experiment reveals that in constant relative humidity, evaporative coatings are not effective. Next, periodic experimentation was conducted with variations of temperature; relative humidity and solar radiation. From the results the minimum value for outdoor surface was found for white uneven thermal barrier coating (SR4), which can reduce the temperature up to 7.9 degrees C and the minimum inner surface temperature was recorded for WSS particle (L) that can reduce 5.8 degrees C. The better performance of porous particles was possibly caused by the moisture adsorption at night time and latent heat release at daytime. This study supports that the meso-porous coatings for building envelopes can significantly contribute to moderate the indoor thermal environment. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文旨在研究几种反射和蒸发墙涂料的性能,以确定最有效的一种缓和室内热环境的涂料。选择了八种具有不同颜色和特性的反射涂层。对于蒸发涂层,使用Wakkanai硅质页岩(WSS)颗粒的三个不同样品;在实验室中生产了B型小,中,大和硅胶,并选择了实验室中先前开发的另一种WSS砂浆。首先,在简单的边界条件下,在室内对未涂覆的混凝土,反射涂料和WSS砂浆(作为蒸发基团的代表)进行了试验。记录了白色凹凸涂层和白色耐脏涂层的室外和室内表面温度的最小值,它们可以分别将室外和室内表面温度降低6.9摄氏度和1.9摄氏度。稳态实验的结果表明,在恒定的相对湿度下,蒸发涂层是无效的。接下来,根据温度的变化进行定期实验。相对湿度和太阳辐射。根据结果​​,发现白色不均匀热障涂层(SR4)的室外表面最小值,可以将温度降低到7.9摄氏度,而WSS颗粒(L)的最低内表面温度可以降低5.8度。 C.多孔颗粒更好的性能可能是由于夜间吸湿和白天释放潜热引起的。这项研究支持用于建筑围护结构的中孔涂料可以显着改善室内热环境。 (C)2019 Elsevier B.V.保留所有权利。

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