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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Integrated data analysis at an archaeological site: A case study using 3D GPR, magnetic, and high-resolution topographic data
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Integrated data analysis at an archaeological site: A case study using 3D GPR, magnetic, and high-resolution topographic data

机译:考古现场的综合数据分析:使用3D GPR,磁性和高分辨率地形数据的案例研究

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摘要

We have collected magnetic, 3D ground-penetrating-radar (GPR), and topographic data at an archaeological site within the Palace Garden of Paretz, Germany. The survey site covers an area of approximately 35 x 40 m across a hill structure (dips of up to 15 degrees) that is partly covered by trees. The primary goal of this study was to detect and locate the remains of ancient architectural elements, which, from historical records, were expected to be buried in the subsurface at this site. To acquire our geophysical data, we used a recently developed surveying approach that combines the magnetic and GPR instrument with a tracking total station (TTS). Besides efficient data acquisition, this approach provides positional information at an accuracy within the centimeter range. At the Paretz field site, this information was critical for processing and analyzing our geophysical data (in particular, GPR data) and enabled us to generate a high-resolution digital terrain model (DTM) of the surveyed area. Integrated analysis and interpretation based on composite images of the magnetic, 3D GPR, and high-resolution DTM data as well as selected attributes derived from these data sets allowed us to outline the remains of an artificial grotto and temple. Our work illustrates the benefit of using multiple surveying technologies, analyzing and interpreting the resulting data in an integrated fashion. It further demonstrates how modern surveying solutions allow for efficient, accurate data acquisition even in difficult terrain.
机译:我们已经在德国Paretz皇宫花园内的考古现场收集了磁性,3D探地雷达(GPR)和地形数据。勘测场地覆盖了部分被树木覆盖的丘陵结构(倾角最大15度)约35 x 40 m。这项研究的主要目的是发现和定位古代建筑元素的遗迹,根据历史记录,这些遗迹预计将被埋在该地点的地下。为了获取我们的地球物理数据,我们使用了一种最新开发的测量方法,该方法将磁性和GPR仪器与跟踪全站仪(TTS)相结合。除了有效的数据采集外,此方法还可以在厘米范围内提供精度的位置信息。在Paretz现场,此信息对于处理和分析我们的地球物理数据(特别是GPR数据)至关重要,并使我们能够生成被调查区域的高分辨率数字地形模型(DTM)。基于磁性,3D GPR和高分辨率DTM数据的合成图像以及从这些数据集导出的选定属性的综合分析和解释,使我们能够勾勒出人造石窟和庙宇的轮廓。我们的工作说明了使用多种测量技术,以集成方式分析和解释结果数据的好处。它进一步说明了即使在困难的地形中,现代的测量解决方案也可以实现高效,准确的数据采集。

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