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Experimental and theoretical investigation about the effect of nano-coating on heating load

机译:纳米涂层对加热载荷作用的实验与理论研究

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Building insulators reducing the natural gas required for interior heating or heating load reduction, have a positive impact on energy saving. Paints containing nano-silica aerogel can be applied as fa?ade coatings and building insulators. In this study, the heating load was assessed for a building in a Mediterranean climate. Acrylic paint containing nano-silica aerogel was used as fa?ade coating. The purpose was obtaining the performance of nano-paint on the reduction of heating load for the building. A model was developed to evaluate the amount of building heating load with and without the nano-paint. Nano-coated fa?ade showed reductions in heating load compared to that fa?ade without nano-coating. In addition, a stable heating load requirement was obtained after applying nano-paint, despite changes in the climatic conditions. Thermal insulation and water repellent properties of the paint containing nano-silica aerogel were important to reduce heating load requirement. Therefore, nano-paint containing silica aerogel was a cost-effective modification for fa?ade which introduced a promising passive method to reduce heating load requirement in the buildings.
机译:建筑绝缘体减少室内加热或加热负荷减少所需的天然气,对节能产生积极影响。含有纳米二氧化硅气凝胶的涂料可用作Faα涂层和建筑绝缘体。在该研究中,在地中海气候中评估了加热负荷。含有纳米二氧化硅气凝胶的丙烯酸涂料用作Faβ涂层。目的是获得纳米涂料对建筑物的加热负荷的降低的性能。开发了一种模型来评估建筑物加热载荷量,无纳米涂料。纳米涂层Fa?与该Faα相比,ade在没有纳米涂层的情况下表现出加热负荷的降低。此外,尽管气候条件变化,但在施加纳米涂料后获得稳定的加热负荷要求。含有纳米二氧化硅气凝胶的涂料的热绝缘和防水性能对于降低加热负荷要求是重要的。因此,含有二氧化硅气凝胶的纳米涂料是对FA的成本有效的改性,其引入了有望的无源方法,以减少建筑物中的加热负荷要求。

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