宏观和微观尺度地球物理调查在指导和监测美国乔治亚州北部中部林地遗址挖掘中的作用

IF 2.1 3区 地球科学 0 ARCHAEOLOGY
Daniel P. Bigman, Dominic J. Day, William M. Balco
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引用次数: 5

摘要

地球物理调查已经成为考古实践中绘制遗址和帮助选择挖掘地点的标准,但是在挖掘过程中实时应用这些技术来帮助预测特征位置和最大限度地恢复尚未发展。本文介绍了在Rice Farm (9DW276)挖掘过程中使用这些方法的传统地球物理和新方法的结果,Rice Farm位于佐治亚州北部Etowah河附近的广阔洪泛区。地面的探地雷达(GPR)可以有效地记录反映考古特征的反射事件,如壁炉、柱子和可能的沟渠。磁强计是有帮助的,但由于沉重的犁区疤痕和现代金属碎片的噪音,效果不太好。高频手持式探地雷达有助于实时监测挖掘情况,并协助挖掘机预测大直径和小直径特征的位置。地球物理异常的挖掘为解释这个新记录的遗址揭示了重要的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The roles of macro- and micro-scale geophysical investigations to guide and monitor excavations at a Middle Woodland site in northern Georgia, USA

Geophysical investigations have become standard in archaeological practice to map sites and help select location for excavation, but the application of these techniques in real time during excavation to help anticipate feature location and maximize recovery has not been developed. This paper presents results from both traditional geophysics and new approaches to using these methods during excavations at Rice Farm (9DW276), a Middle Woodland site located in a broad floodplain adjacent to the Etowah River in north Georgia. Ground penetrating radar (GPR) at the surface was effective in recording reflection events indicative of archaeological features, such as hearths, posts and possibly ditches. Magnetometry was helpful, but less effective due to heavy plough zone scarring and noise from modern metallic debris. High-frequency handheld GPR was helpful in monitoring excavations in real time and assisted excavators in anticipating the locations of both large and small diameter features. Excavation of geophysical anomalies exposed important features for the interpretation of this newly documented site.

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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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