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Smart cool mortar for passive cooling of historical and existing buildings: experimental analysis and dynamic simulation

机译:用于历史和现有建筑物被动冷却的智能冷却砂浆:实验分析和动态模拟

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摘要

In order to mitigate Urban Heat Island Effect and global warming, both governments and scientific community are working to reduce energy consumptions. In particular, the construction sector has a high potential in reducing energy demand, by means of both active and passive solutions. The European building stock is mainly composed by existing buildings as well as historical ones, which happens to be the less energy efficient ones. Moreover, retrofit operations are more complex on historical buildings, due to strict regulations for the preservation of such historical and cultural heritage. Considering this challenge, in this work we described and in lab analyzed possible passive solutions specifically designed for historical and existing buildings. In particular, we developed innovative cool colored mortars and tested them in lab, as well as investigated cool colored mortars, cool clay tiles and cool natural gravels performance when applied as envelope and roof elements, by means of dynamic simulation.
机译:为了减轻城市热岛效应和全球变暖,各国政府和科学界都在努力减少能源消耗。特别是,通过主动和被动解决方案,建筑行业在减少能源需求方面具有巨大潜力。欧洲建筑群主要由既有建筑和历史建筑组成,而这些建筑恰恰是能源效率较低的建筑。此外,由于对此类历史和文化遗产进行保护的严格规定,对历史建筑进行改造的操作更为复杂。考虑到这一挑战,我们在这项工作中描述并在实验室中分析了专门为历史和现有建筑物设计的可能的被动解决方案。特别是,我们开发了创新的冷色砂浆并在实验室进行了测试,并通过动态模拟研究了冷色砂浆,冷粘土砖和天然天然砂砾在用作围护和屋顶元素时的性能。

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