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Quantitative analysis of pulse thermography data for degradation assessment of historical buildings

机译:脉冲热像仪数据的定量分析,用于评估历史建筑

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摘要

In the last decades, infrared thermography has been successfully applied to various materials and structures for the assessment of their state of conservation and planning suitable restoration works. To this aim, mathematical models are required to characterize thermal anomaly sources, such as detachments, water infiltration and material decomposition processes. In this paper, an algorithm based on the conservative finite difference method is used to analyse pulse thermography data acquired on an ancient building in the Pompeii archaeological site (Naples, Italy). The numerical study is applied to both broad and narrow elongated thermal anomalies. In particular, from the comparison between simulated and experimental thermal decays, the plaster thickness was characterized in terms of thermal properties and areas of possible future detachments, and moisture infiltration depths were identified.
机译:在过去的几十年中,红外热成像技术已成功应用于各种材料和结构,以评估其保护状态并计划适当的修复工作。为此,需要数学模型来描述热异常源的特征,例如脱离,水渗透和材料分解过程。在本文中,基于保守有限差分法的算法被用于分析在庞贝古城考古遗址(意大利那不勒斯)上采集的脉冲热成像数据。数值研究适用于宽和窄拉长的热异常。尤其是,通过比较模拟的和实验的热衰减,石膏的厚度根据热特性和未来可能脱离的区域进行了表征,并确定了水分渗透深度。

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