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Thermographic measurement of thermal bridges in buildings under dynamic behavior

机译:动态行为下建筑物热桥的热成像测量

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The accurate knowledge of the thermal performance could reduce significantly the impact of buildings on global energy consumption. Infrared thermography is widely recognized as one of the key technologies for building surveys, thanks to its ability to acquire at a glance thermal images of the building envelope. However, a spot measurement could be misleading when the building is under dynamic thermal conditions. In this case data should be acquired for hours or days, depending on the thermal properties of the walls. Long term thermographic monitoring are possible but imply strong challenges from a practical standpoint. This work investigates the possibilities and limitations of spot thermographic surveys coupled with contact probes, that are able to acquire continuously the thermal signal for days, to investigate the thermal bridges of a building. The goal is the estimation of the reliability and accuracy of the measurement under realistic environmental conditions. Firstly, numerical simulations are performed to determine the reference value of an experimental case. Then a long term thermographic survey is performed and integrated with the contact probe measurement, assessing the feasibility of the method.
机译:准确了解热性能可以大大减少建筑物对全球能源消耗的影响。红外热成像技术能够一目了然地获取建筑物围护结构的热图像,因此被公认为是建筑物测量的关键技术之一。但是,当建筑物处于动态热条件下时,现场测量可能会产生误导。在这种情况下,应根据墙壁的热特性获取数小时或数天的数据。可以进行长期的热像仪监视,但从实际角度出发,这意味着严峻的挑战。这项工作研究了结合接触探针的现场热成像调查的可能性和局限性,接触探针能够连续几天获取热信号,以研究建筑物的热桥。目的是在实际环境条件下评估测量的可靠性和准确性。首先,进行数值模拟以确定实验案例的参考值。然后进行长期的热成像调查,并将其与接触式探针测量相集成,以评估该方法的可行性。

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