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High resolution survey of buildings by lock-in IR thermography

机译:锁定IR热成像对建筑物的高分辨率调查

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Applications of Infrared Thermography in buildings surveys are not limited to the identification of the temperature distribution and heat losses on building envelopes. As it is well known from NDT testing in industrial applications, active IR thermographic methods such as heating-up/cooling-down or lock-in thermography improve the results in many investigations. In civil engineering these techniques have not been used widely. Mostly, thermography is used in a quasi-static manner. This paper illustrates a new approach to achieve, by the lock-in technique, an in depth view of the structure of the wall evidencing the presence of buried elements, interfaces and cracks. The idea is to take advantage of the periodic heating and cooling of earth surface due to the alternating of day and night. The corresponding thermal wave has a period equal to 24 hours that can probe the walls of buildings with a penetration depth of the order of some centimeters. The periodic temperature signal is analysed to extract amplitude and phase. It is expected that the phase image gives the indication of inhomogeneity buried in the wall structure. As a case study, the exterior surface of Palazzo Ducale in Venice is analysed and illustrated. In addition to IR images, visible electromagnetic band is considered to evaluate the strength of the solar radiation and the geometrical distortion. Indeed, the periodicity due to the Earth rotation is only approximately of 24 hours. The passing clouds or the possibility of rainy days can superimpose other heating or cooling frequencies to the main one. The Fourier analysis of the impinging radiation on the wall is performed. The facade of Palazzo Ducale is tiled with stone of two different colours and types. A final attempt to automatically classify the stone tiles in the visible and infrared images is conducted.
机译:红外热成像在建筑物中的应用不限于识别建筑信封的温度分布和热损失。从工业应用中的NDT测试中众所周知,有源IR热成像方法如加热/冷却或锁定热成像,改善了许多研究的结果。在土木工程中,这些技术尚未广泛使用。主要是,热成像以准静态方式使用。本文说明了通过锁定技术实现的新方法,这是墙壁结构的深度视图,其证明存在掩埋元件,界面​​和裂缝的存在。由于白天和夜晚的交替,可以利用地球表面的周期性加热和冷却。相应的热波具有等于24小时的时段,可以探测建筑物的壁,渗透深度为一定厘米的顺序。分析周期性温度信号以提取幅度和相位。期望相位图像使掩埋在墙体结构中的不均匀性的指示。作为一个案例研究,分析并说明了威尼斯的Palazzo Ducale的外表面。除IR图像外,可见电磁带被认为是评估太阳辐射和几何变形的强度。实际上,由于地球旋转引起的周期性仅为约24小时。通过云或雨天的可能性可以将其他加热或冷却频率叠加到主要的天。进行墙壁上撞击辐射的傅里叶分析。 Palazzo Ducale的门面铺有两种不同颜色和类型的石头。最后尝试自动对可见和红外图像中的石块进行分类。

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