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Interior insulation retrofit of a historical brick wall using vacuum insulation panels: Hygrothermal numerical simulations and laboratory investigations

机译:使用真空隔热板对历史悠久的砖墙进行内部隔热改造:湿热数值模拟和实验室研究

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Old listed buildings need to be retrofitted to reduce the energy use for heating. The possible thickness of the insulation layer is limited by the existing construction. Vacuum insulation panels (VIPs) require less thickness than conventional insulation materials to reach the same thermal resistance. Therefore, it could be more appropriate to use VIPs than conventional insulation materials when retrofitting the building envelope of listed buildings. The aim of this study is to investigate the hygrothermal performance of a brick wall with wooden beam ends after it was insulated on the interior with VIPs. One- and two-dimensional hygrothermal numerical simulations were used to design a laboratory study in a large-scale building envelope climate simulator. The wall was exposed to driving rain on the exterior surface and a temperature gradient. The relative humidity in the wall increased substantially when exposed to driving rain. The moisture content in the wooden beams also increased. There was no significant difference between the relative humidity in the wooden beam ends for the cases with and without VIPs. However, it was found that the reduced temperature in the brick after the VIPs were added led to a higher relative humidity in the wooden beams. It was also clear that when VIPs were added to the interior, the drying capacity to that side of the wall was substantially reduced. Finally, calculations of the U-value showed a large potential to reduce the energy use using VIPs on the interior of brick walls. (C) 2014 Elsevier Ltd. All rights reserved.
机译:需要对旧有建筑物进行改造,以减少供暖的能耗。绝缘层的可能厚度受到现有构造的限制。真空隔热板(VIP)所需的厚度要小于常规隔热材料,以达到相同的热阻。因此,在翻新列出的建筑物的建筑围护结构时,使用VIP而不是使用传统的保温材料更为合适。这项研究的目的是研究带有木梁端部的砖墙在用VIP进行室内隔热后的吸湿热性能。使用一维和二维湿热数值模拟来设计大型建筑围护气候模拟器中的实验室研究。墙壁暴露在外表面的暴雨和温度梯度下。当暴露在雨中时,墙壁中的相对湿度会大大增加。木梁中的水分含量也增加了。有和没有VIP的情况下,木梁两端的相对湿度之间没有显着差异。但是,发现在添加VIP后砖的温度降低导致木梁的相对湿度更高。同样很明显,当将VIP添加到内部时,墙壁那侧的干燥能力大大降低了。最后,U值的计算显示出在砖墙内部使用VIP减少能耗的巨大潜力。 (C)2014 Elsevier Ltd.保留所有权利。

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