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Combination of terahertz radiation method and thermal probe method for non-destructive thermal diagnosis of thick building walls

机译:太赫兹辐射法和热探针法相结合对厚壁建筑墙体的无损热诊断

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摘要

Non-destructive thermal diagnosis of walls is a crucial theme for the renovation of old buildings, the examination of building structures and the accreditation of new buildings. Nevertheless, there are very few diagnostic methods for the characterization of thick walls. In this study, an innovative approach that combines terahertz radiation method and thermal probe method is proposed. Firstly, a method using THz (terahertz) radiation is investigated and primary experimental results are shown. This THz radiation method has a large potential to characterize the dense building materials (concrete, plaster) in a short time. However, this method is less sensitive to the light insulating materials which are totally transparent to such THz radiation, and it is also impossible to identify the structure and layer order in the case of multilayer walls. Then, based on the classical thermal probe method, three multilayer walls formed of plaster, concrete and insulation materials which are common components of building walls are considered. A short time thermal probe method with an assumption of semi-infinite boundary condition is innovatively proposed. This thermal method is able to identify the first layer of wall and characterize light insulating materials or insulating and slightly capacitive materials. Therefore, with the two methods, both the dense materials and light insulating materials can be characterized. Finally, a combined application of the two methods is discussed and analyzed. (C) 2017 Elsevier B.V. All rights reserved.
机译:墙壁的无损热诊断是旧建筑的翻新,建筑结构检查和新建筑认证的关键主题。然而,很少有用于表征厚壁的诊断方法。在这项研究中,提出了一种结合太赫兹辐射法和热探针法的创新方法。首先,研究了使用太赫兹(太赫兹)辐射的方法,并显示了主要的实验结果。这种太赫兹辐射方法具有在短时间内表征稠密建筑材料(混凝土,灰泥)的巨大潜力。但是,该方法对对于这种太赫兹辐射完全透明的光绝缘材料不敏感,并且在多层壁的情况下也无法确定结构和层顺序。然后,基于经典的热探针法,考虑了由石膏,混凝土和隔热材料构成的三层多层墙,它们是建筑墙的常见组成部分。创新地提出了一种在半无限边界条件下的短时热探针方法。这种热方法能够识别墙壁的第一层,并表征光绝缘材料或绝缘和微电容材料。因此,通过这两种方法,可以同时表征致密材料和轻质绝缘材料。最后,讨论并分析了这两种方法的组合应用。 (C)2017 Elsevier B.V.保留所有权利。

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