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Investigating the Dynamic Thermal Behavior of Building Envelope in Summer Conditions By Means of in-Field Continuous Monitoring

机译:通过现场连续监测研究夏季条件下建筑围护结构的动态热行为

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摘要

The effect of dynamic properties of building opaque envelope in summer conditions is investigated by means of an extensive continuous monitoring of a dedicated experimental field. Two test-buildings, a weather station and two microclimate stations positioned in each test-building represent the experimental field. The prototype buildings have been specifically designed to present the same stationary envelope properties, but different construction techniques and materials, therefore behaving differently in real dynamic conditions. Building upon a previous study by the authors, also in summer conditions, the main results of this research show a non-negligible difference of the dynamic hygro-thermal behavior of the two Test-Rooms. Significant differences in terms of indoor air temperature, envelope surface indoor/outdoor temperatures and indoor air humidity are detected, due to the difference in the dynamic envelope properties of the two Test-Rooms, i.e., thermal mass, solar reflectance of the external skin and transpiration capability. Also, the overall discrepancy is detected to be higher in summer than in winter conditions, given the higher influence of the outdoor weather forcing boundaries such as solar radiation.
机译:通过对专用实验场进行广泛的连续监测,研究了夏季条件下建筑不透明围护结构动力特性的影响。两个测试建筑物,一个气象站和两个位于每个测试建筑物中的小气候站代表了实验场。原型建筑经过专门设计,具有相同的固定围护结构特性,但是建筑技术和材料不同,因此在实际动态条件下的行为也有所不同。基于作者先前的研究,也是在夏季条件下,这项研究的主要结果表明两个试验室的动态湿热行为差异不可忽略。由于两个测试室的动态包络特性不同,即热质量,外部皮肤的日光反射率和蒸腾能力。此外,考虑到室外天气迫使边界(例如太阳辐射)的影响较大,夏季总体差异要比冬季条件高。

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