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High resolution terrestrial thermography of archaeological sites

机译:高分辨率的考古遗址陆地热成像

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摘要

Thermal infrared imaging, or thermography, is the remote sensing technique of detecting variations in ground temperature caused by exposed or subsurface archaeological remains either absorbing or radiating heat. Despite its conception in the 1970s, the practice has to date been rarely utilized, as a result of the high cost of the technology and the complex interplay of environmental variables. However, recent studies have demonstrated the effectiveness of the technique, especially when combining modern thermal cameras with unmanned aerial vehicles (UAV). Yet these papers often focus on mid- to high-altitude flights, where the technique is only effective at detecting larger thermal anomalies. This article presents a new method for terrestrial thermography, developed for the Zagora Infrared Photogrammetry Project (The University of Sydney and the Australian Archaeological Institute at Athens). The project undertook a six week thermal investigation of the Early Iron Age site of Zagora and the surrounding hinterland utilizing the newest commercial thermal cameras and UAVs. The method of terrestrial thermography involves using photographic poles and photogrammetry to create high-resolution thermal orthophotographs, which allow the detection of smaller thermal anomalies, providing significantly more detail than aerial thermography. Several features were discovered using this method, including a possible kiln, which would be the first ever identified at the site.
机译:热红外成像或热成像是遥感技术,用于检测由暴露或地下考古学引起的接地温度变化的技术仍然是吸收或辐射热量。尽管在20世纪70年代概念,但迄今为止,该实践已经很少被利用,因此该技术的高成本和环境变量的复杂相互作用。然而,最近的研究表明了该技术的有效性,特别是当与无人驾驶飞行器(UAV)结合现代热摄像头时。然而,这些论文通常专注于中到高空飞行,其中该技术仅对检测较大的热异常有效。本文为Zagora红外摄影测量项目(悉尼大学和雅典考古学研究所)开发了一种新的地面热成像方法。该项目承担了六周的Zagora早期铁代时代现场的六周热调查,利用最新的商用热敏摄像头和无人机和无人机的周围的腹地。地面热成像的方法涉及使用摄影杆和摄影测量来创造高分辨率热反应摄影投影仪,其允许检测较小的热异常,提供比空中热成像更明显的细节。使用这种方法发现了几个特征,包括可能的窑,这将是第一个在该网站上识别的窑炉。

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