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Diffraction stack imaging as a potential tool for detecting underground voids - the case of the ancient copper mines of Timna Valley (Israel)

机译:衍射堆叠成像作为检测地下空隙的潜在工具 - 蒂玛谷古代铜矿的情况(以色列)

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摘要

Detection of subsurface features using geophysical methods is an important component of archaeological research. Most geophysical methods suffer from loss of resolution with depth and are most successful when employed on hyper-shallow targets. We present a novel imaging method that utilizes summation of diffracted seismic energy in the depth domain to image the subsurface and detect areas of material contrasts, which is especially useful for detecting subsurface voids. The diffraction imaging (DI) method was validated in a synthetic case and in two archaeological sites where known ancient tunnels exist and then employed in the ancient copper ore district of Timna Valley (southern Israel). The results demonstrate the feasibility of the DI method to detect ancient underground mining galleries that connected between (now blocked) mining shafts, which in turn constitutes a significant contribution to the study of ancient prospection and mining technologies and related social and historical aspects.
机译:使用地球物理方法检测地下特征是考古研究的重要组成部分。大多数地球物理方法损失了积累的分辨率,在超浅目标上使用时是最成功的。我们介绍了一种新的成像方法,其利用深度域中的衍射地震能量的总和,以将地下图像图像和检测材料对比区域,这对于检测地下空隙特别有用。衍射成像(DI)方法在合成案例中验证,并在两个考古地点存在,其中已知的古代隧道存在,然后在蒂姆纳谷古铜区(以色列南部)中使用。结果表明,DI方法检测古老地下采矿库的可行性,这些挖掘连接(现在被封闭)采矿轴之间的连接,这又为古代博览会和采矿技术和相关社会和历史方面的研究构成了重大贡献。

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