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The effects of ventilation systems and building fabric on the stability of indoor temperature and humidity in Finnish detached houses

机译:通风系统和建筑面料对芬兰独立式住宅室内温度和湿度稳定性的影响

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摘要

Interest in finding out passive ways to keep the variation in the indoor climate within the comfort zone is gaining in popularity. One possible solution is the use of the moisture-buffering property of materials. In this study, the effects of the ventilation system and moisture-buffering properties of the building fabric on the stability of the indoor temperature and humidity are analysed by means of long-term field measurements. Indoor climate measurements were carried out in 170 detached houses (248 rooms). Temperature and relative humidity were measured continuously in bedrooms and living rooms at one-hour intervals over a one-year period. In general, it may be concluded that in this study, the ventilation had a greater effect on the indoor climate than the properties of the building fabric. The dampening effect of hygroscopic materials was remarkably less in the field measurements than it was in simulations in different studies. This indicates that completely non-hygroscopic and fully hygroscopic houses do not exist in reality. The hygroscopic mass of furniture, textiles, etc. is probably a factor that plays a significant role in indoor humidity, as do real air change rates, including window airing. Simulation tools need to be modified in order to be able also to handle furniture, textiles, and books, etc.
机译:寻求在舒适区域内保持室内气候变化的被动方式的兴趣正日益普及。一种可能的解决方案是使用材料的水分缓冲特性。在这项研究中,通过长期的现场测量分析了通风系统和建筑织物的水分缓冲特性对室内温度和湿度稳定性的影响。室内气候测量是在170栋独立房屋(248个房间)中进行的。在一年中,以一小时的间隔连续测量卧室和客厅的温度和相对湿度。总的来说,可以得出结论,在这项研究中,通风对室内气候的影响大于建筑织物的特性。与不同研究中的模拟相比,在现场测量中,吸湿性材料的阻尼效果显着降低。这表明实际上不存在完全非吸湿和完全吸湿的房屋。家具,纺织品等的吸湿性可能是影响室内湿度的重要因素,包括窗户通风在内的实际换气率也一样。需要修改仿真工具,以便也能够处理家具,纺织品和书籍等。

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