空间位置模型:来自激光雷达技术和实地调查的戈尔河巨石景观(西班牙)的新数据

IF 2.1 3区 地球科学 0 ARCHAEOLOGY Archaeological Prospection Pub Date : 2022-10-07 DOI:10.1002/arp.1879
Carolina Cabrero-González, Antonio Garrido-Almonacid, Francisco Javier Esquivel, Juan Antonio Cámara-Serrano
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引用次数: 0

摘要

戈尔河谷(西班牙安达卢西亚)的巨石群是欧洲最大的多美尼岩群之一,由151块保存完好的巨石组成。尽管已知的纪念碑数量如此之多,但在过去几十年中,由于巨大的土壤侵蚀和人类活动,许多坟墓的损失和破坏越来越多。为了记录这些丢失巨石的位置,数字地形模型和激光雷达数据已被用于分析地形,显示出大量结构,这些结构似乎与该地区实际记录的结构相似,但直到现在才被注意到。这些可能的新土墩已经通过考古表面调查进行了测试,选择了三个对比鲜明的区域作为样本。研究结果表明,这种方法的成功率很高,甚至可以在大量研究的地区发现新的巨石坟墓。我们认为,该地区可能有更多的土丘,这表明在公元前4千年至公元前3千年之间,边界地区的领土控制更大。
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A model of spatial location: New data for the Gor River megalithic landscape (Spain) from LiDAR technology and field survey

The megalithic cluster of the Gor River valley (Andalusia, Spain) is one of the biggest dolmenic groups in Europe, made up of 151 preserved megaliths. In spite of this high number of known monuments, increasing loss and destruction of many of the graves has taken place during the last decades due to enormous soil erosion and anthropogenic activities. With the aim of recording the location of these lost megaliths, Digital Terrain Models and LiDAR data have been used to analyse the terrain showing a high quantity of structures that seem similar to those actually documented in the zone but that were not noticed until now. These possible new burial mounds have been tested by archaeological surface survey, choosing three contrasting areas as samples. Results have shown a high success rate for this methodology, even allowing the discovery of new megalithic graves in heavily researched areas. We interpret the likely higher number of burial mounds in the area to indicate greater territorial control in boundary areas between 4th and 3rd millennium BC.

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来源期刊
Archaeological Prospection
Archaeological Prospection 地学-地球科学综合
CiteScore
3.90
自引率
11.10%
发文量
31
审稿时长
>12 weeks
期刊介绍: The scope of the Journal will be international, covering urban, rural and marine environments and the full range of underlying geology. The Journal will contain articles relating to the use of a wide range of propecting techniques, including remote sensing (airborne and satellite), geophysical (e.g. resistivity, magnetometry) and geochemical (e.g. organic markers, soil phosphate). Reports and field evaluations of new techniques will be welcomed. Contributions will be encouraged on the application of relevant software, including G.I.S. analysis, to the data derived from prospection techniques and cartographic analysis of early maps. Reports on integrated site evaluations and follow-up site investigations will be particularly encouraged. The Journal will welcome contributions, in the form of short (field) reports, on the application of prospection techniques in support of comprehensive land-use studies. The Journal will, as appropriate, contain book reviews, conference and meeting reviews, and software evaluation. All papers will be subjected to peer review.
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