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The impact of floor thermal capacity on air temperature and energy consumption in buildings in temperate climate

机译:温带气候下地板热容量对建筑物空气温度和能耗的影响

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The paper analyses the efficiency of increasing the thermal mass above the floor to reduce summer overheating in one-storey residential terraced buildings in temperate climate. The effect of floor slab thickness on total yearly energy demand is also investigated. According to EN ISO 13786:2017 standard, the useful thermal mass thickness of building envelope is limited to approximately 8-10 cm distance from its surface. Increasing the floor slab thickness from 8 to 18 cm lowered the average and maximum indoor air temperature during 9 day heat wave by 1.25 K and 1.52 K, respectively. Since these effects were obtained for a room with a relatively high total thermal capacity, it can be expected that it would be higher for rooms with a low thermal capacity enclosure. Cooling, heating and total energy demand decreased by 27.1%, 7.5% and 17.0%, respectively. The experiment results show that increase of floor slab thickness over the maximum values given in EN ISO 13786:2017 standard can lead to significant decrease of indoor air temperature during summer heat wave as well as heating and cooling energy demand. The cooling effect remained stable both during the 24-h cycle and throughout the entire heat wave period. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文分析了在温带气候下,增加楼上热量的效率,以减少夏季单层梯田建筑过热的效率。还研究了楼板厚度对年总能源需求的影响。根据EN ISO 13786:2017标准,建筑物围护结构的有效热质量厚度限制为距其表面约8-10 cm的距离。将楼板厚度从8 cm增加到18 cm,会使9天热浪期间的平均室内空气温度和最高室内温度分别降低1.25 K和1.52K。由于这些效果是在具有相对较高的总热容量的房间中获得的,因此可以预期,对于具有较低热容量外壳的房间,该效果会更高。制冷,供暖和总能源需求分别下降了27.1%,7.5%和17.0%。实验结果表明,楼板厚度超过EN ISO 13786:2017标准中给出的最大值会导致夏季热浪期间室内空气温度以及供暖和制冷能源需求的显着下降。在24小时周期以及整个热浪期间,冷却效果均保持稳定。 (C)2019 Elsevier Ltd.保留所有权利。

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