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Study of experimental parameters for IRT applications in building elements using multi-layered analytical solutions

机译:使用多层分析解决方案研究IRT在建筑构件中的应用的实验参数

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This paper compares experimental and heat transfer modeling results for thermography applications in building elements. Over the years most building envelope inspections using infrared thermography (IRT) have been focused on qualitative analysis using mostly passive thermography techniques. However, increased need for the monitorization and assessment of the energy performance and thermal behavior of buildings, along with ongoing structural safety concerns, has raised interest in quantitative studies and active IRT applications in buildings. Numerous other fields have benefited from developments in defect detection studies and from countless non-destructive testing applications. Pulse phase thermography, in which phase images are studied (instead of temperature images) using a long heating pulse have been proposed to be the most effective for Civil Engineering applications. However, the particular characteristics of building elements and materials, along with the complex nature of heat transfer phenomena, demand specific experimental procedures and processing techniques. In this paper, analytical solutions to simulate heat transfer in the frequency domain in multi-layered media are used to compute thermal wave phase results. These are compared to experimental IRT phase analysis results of experiments performed on test specimens simulating building elements with embedded defects. Crucial test parameters such as test duration and defect characteristics are changed and their influence is studied. In this way, this paper contributes to the understanding of building envelope thermal patterns using active IRT in defect detection studies and to the definition of test parameters.
机译:本文比较了热成像在建筑构件中的实验和传热建模结果。多年来,大多数使用红外热成像(IRT)的建筑围护结构检查都集中在使用被动热成像技术进行定性分析上。但是,对建筑物的能源性能和热行为的监视和评估的需求不断增加,以及对结构安全的持续关注,引起了人们对建筑物中定量研究和积极的IRT应用的兴趣。缺陷检测研究的发展以及无数无损检测应用的发展也使许多其他领域受益。脉冲相热成像技术被认为是最有效的土木工程应用,其中使用长加热脉冲研究相图像(而不是温度图像)。但是,建筑元素和材料的特殊特性以及热传递现象的复杂性要求特定的实验程序和处理技术。在本文中,使用模拟解决方案来模拟多层介质在频域中的传热,以计算热波相位结果。将这些与实验IRT阶段分析结果进行比较,该阶段IRT阶段分析结果是在对带有嵌入式缺陷的建筑构件进行模拟的试样上进行的。更改关键测试参数,例如测试持续时间和缺陷特征,并研究其影响。这样,本文有助于在缺陷检测研究中使用有源IRT了解建筑物围护结构的热模式,并有助于定义测试参数。

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