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Study of a thermal dispersion in buildings and advantages of ceramic coatings for the reduction of energy expenditure

机译:陶瓷涂层的堆积和优点的热分散研究

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Energy consumption in buildings is due to the low efficiency of thermal and electrical systems and the high rate of thermal dispersion of the building envelope, defined as one or more layers of material that separate the internal environment from the external environment of a building. Their function is to protect the internal environment from external agents such as cold, heat, moisture, rain, hail, snow, wind, light, sources of noise pollution and, based on the criticality of the place, air pollution. To reduce energy consumption, it is therefore necessary to act primarily on the building envelope, which should be designed and constructed with the aim of guaranteeing thermo-hygrometric comfort and reducing energy consumption (and consequently CO 2 emissions). This means the ability to meet certain performance requirements without significantly impacting energy consumption, such as maintaining the environmental temperature during the wintertime and a better thermal comfort during the summer period. Therefore, when designing a new building or renovating an existing housing unit, technologies and materials must be used to improve the energy performance of the building. This work demonstrates that with the addition of a ceramic slab as external coating, the heat losses decrease by 42% with respect to a traditional wall configuration without any thermal insulator installed. As for the existing houses already equipped with an internal insulation or a coat, the addition of the ceramic slab results in decreases in thermal variation of 31 and 40% for the internal thermal coat installation and a post construction ready-to-use insulation, respectively.
机译:建筑物中的能量消耗是由于热电和电气系统的效率低,以及建筑包络的高热分散率,定义为一个或多个材料层,这些材料从建筑物的外部环境中分离内部环境。它们的功能是保护内部环境免受寒冷,热,水分,雨,冰雹,雪,风,光,噪音污染源等外部代理,并根据地方的临界,空气污染。为了降低能耗,因此有必要主要采用建筑信封,其应设计和构建,以保证热湿度舒适度和减少能量消耗(以及因此Co 2排放)。这意味着能够满足某些性能要求而不会显着影响能量消耗,例如在冬季期间保持环境温度以及在夏季期间更好的热舒适度。因此,在设计新的建筑物或翻新现有的住房单元时,必须使用技术和材料来改善建筑物的能量性能。这项工作表明,随着陶瓷板作为外涂层,相对于传统的墙壁配置,热损失在没有安装的传统墙体构造的情况下减小42%。至于已经配备内部绝缘层或涂层的现有房屋,陶瓷板的添加导致内部热涂层安装的热变化的减少和40%,分别为后施工即用型即用绝缘。

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