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Thermal performance characterization of a modular system for facade

机译:立面模块化系统的热性能表征

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The developed system corresponds to multifunctional prefabricated modular elements that combine an insulation layer with a cast coating material for exterior that can imitate stone or concrete. These systems need auxiliary elements of fixing to connect them mechanically to the structural wall of the building, in order to ensure its stability, using anchorage, profiles, rails, among others. The use of these systems connected to the coating interrupts the continuity of thermal insulation, causing additional heat losses through linear and point thermal bridges, having an detrimental effect on thermal performance of the system. The development of fixing of present multifunctional panels was based on the evaluation and adoption of appropriate solutions in order to minimize thermal bridges and reinforce the stability of the panel. For evaluation purposes some models are evaluated, with different connecting systems, configurations and different materials such as aluminium, stainless steel, galvanized steel and Glass Fibre Reinforced Polymer (GFRP) profiles. The quantification of thermal bridges, for evaluation of thermal performance, has been made using computing programs, HEAT2 and FIEAT3. The evaluation of a system developed in this research work, i.e. incorporating profiles in thermal insulation, shows a good thermal resistance contributing significantly to the thermal insulation and energy conservation in building.
机译:开发系统对应于多功能预制的模块化元件,其将绝缘层与铸造涂层材料组合,用于模仿石或混凝土的外部。这些系统需要固定的辅助元件以机械地将它们连接到建筑物的结构壁上,以确保其稳定性,使用锚固,曲线,轨道等。连接到涂层的这些系统中断热绝缘的连续性,导致通过线性和点热桥引起额外的热损失,对系统的热性能产生了不利影响。本发明多功能面板的固定的发展是基于适当的解决方案的评估和采用,以最大限度地减少热桥并加强面板的稳定性。对于评估目的,使用不同的连接系统,配置和不同的材料,如铝,不锈钢,镀锌钢和玻璃纤维增​​强聚合物(GFRP)型材等不同的连接系统,配置和不同材料。用于评估热性能的热桥的定量已经使用计算程序,Heat2和Fieat3进行。在本研究工作中开发的系统的评估,即在热绝缘体中掺入型材,显示出良好的耐热性,其在建筑物中的绝热和节能产生显着贡献。

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