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Development and thermal-optical characterization of a cementitious plaster with phase change materials and thermochromic paint

机译:具有相变材料和热致变色涂料的水泥膏药的开发和热光学表征

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摘要

Current climate challenges in urban areas require practical solutions to mitigate the negative environmental impacts attributed to cities such as the urban heat island (UHI) effect. Thermal stresses caused by high temperatures, temperature fluctuations, and UV radiation exposed to building surfaces negatively affect urban and indoor building thermal comfort, building energy use, and durability of the finish materials. Therefore, increasing the performance of exterior finish materials to mitigate the effects of environmental loads would have benefits on the material, building, and urban scales. This paper aims to characterize the optical and thermal properties of a novel cementitious plaster to control solar and thermal loads. The cement plaster developed for exterior facade applications was integrated with thermochromic paint (TC) and phase change materials (PCM) to dynamically control thermal stresses and solar radiation on the exterior surface of buildings. The solar reflectance, infrared emittance, and thermal conductivity of the samples were measured. The results showed that by applying the TC paint on the surface of the cement plaster, solar reflectance was increased by 23%. By combining the TC paint and the PCMs with the cement plaster, a higher rate of solar absorption in colder temperatures compared to a regular cement plaster was shown. The findings indicate the benefits of using such a plaster year around given the dynamic variation of solar reflectance and absorptance.
机译:城市地区的当前气候挑战需要实用的解决方案来减轻归因于城市热岛(UHI)效应等城市的负面环境影响。由高温,温度波动和UV辐射引起的热应力暴露于建筑物表面产生负面影响城市和室内建筑的热舒适度,建筑能量使用和耐磨材料的耐用性。因此,提高外部饰面材料的性能,减轻环境载荷的影响将有利于材料,建筑和城市鳞片。本文旨在表征新型水泥石膏的光学和热性能,以控制太阳能和热负荷。为外部门面应用开发的水泥石膏与热致变色漆(TC)和相变材料(PCM)集成,以动态控制建筑物外表面上的热应力和太阳辐射。测量了样品的太阳反射率,红外线发射和导热率。结果表明,通过将TC涂料涂在水泥石膏表面上,太阳反射率增加了23%。通过将TC涂料和PCM与水泥石膏组合,与常规水泥石膏相比,较冷的温度较高的太阳能吸收速率较高。调查结果表明,鉴于太阳反射率和吸收率的动态变化,在鉴于太阳能反射率和吸收率的动态变化,这些结果表明了利益。

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