Ancient Iron-Smelting Site “East Hungai” on Olkhon Island (Lake Baikal, Russia): Rock-Magnetic Approach to Archaeological Problems

G. Matasova
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Abstract

Rock-magnetic techniques were used to examine topsoil layer over the “East Hungai” archaeological site on Olkhon Island (Lake Baikal, Siberia) in an effort to determine the possible sources of magnetic anomalies associated with iron smelting activity at about the BC/AD boundary. Measurements of surface and subsurface magnetic susceptibility and laboratory measurements of hysteretic parameters have shown a magnetic heterogenity of strata resulted from the interaction of two factors: the initial differentiation of the bedrock source material and the high intensity of the sedimentary process that contributed to significant desintegration of bedrock and to easy transporting of the disintegrated products. Because bedrock on the east and west sides of the valley are different, the distribution of magnetic susceptibility over the excavation area is rather complex. Nevertheless, susceptibility anomalies corresponding to ore preparation and ore storage zones could be recognized. Most likely East Hungai site was used during prospecting works and trial iron smelting in promising places, which testifies the remarkable activity of ancient metallurgists on the western shore of Lake Baikal
俄罗斯贝加尔湖奥尔洪岛古代炼铁遗址“东黄盖”:岩石磁法研究考古问题
研究人员利用岩石磁技术对奥尔洪岛(西伯利亚贝加尔湖)“东黄盖”考古遗址的表层土壤进行了检测,以确定大约公元前/公元边界与铁冶炼活动相关的磁异常的可能来源。地表和地下磁化率的测量以及滞后参数的实验室测量表明,地层的磁非均质性是由两个因素的相互作用造成的:基岩源物质的初始分异和沉积过程的高强度,这两个因素导致了基岩的显著解体和解体产物的容易运输。由于谷地东西两侧基岩不同,开挖区内磁化率分布较为复杂。但是,可以识别出对应于成矿带和储矿带的敏感性异常。东黄盖遗址极有可能被用于勘探工作,并在有前途的地方试炼铁,这证明了古代冶金学家在贝加尔湖西岸的非凡活动
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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