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Moving earth and building monuments at the Carson Mounds Site, Coahoma County, Mississippi

机译:密西西比州科奥马县卡森丘陵遗址上的动土和建筑纪念碑

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摘要

The application of combined techniques such as aerial imagery, sediment coring, down-hole magnetic susceptibility, and mechanized trench excavation can provide critical information on landscape formation and mound stratigraphy, specifically if they can be used to understand mound sequences and development. This paper reviews preliminary findings from recent coring and test excavations at the Carson mounds site (22CO505) in Coahoma County, Mississippi. Aerial imagery assisted in the characterization of a crevasse ridge flood deposit underlying the site and detailed field descriptions of the pedology corroborated its existence. Subsequent sediment coring and trench excavation revealed the nature of flooding in prehistory, indicating that high-intensity floods were responsible for the formation of the crevasse ridge and that lower intensity floods were potentially responsible for interruptions in mound building at the site. This suggests that the Carson settlement was initiated on an actively flooding landform. Down-hole magnetic susceptibility correlated effectively with the pedology; however, it also helped discern anthropogenic surfaces (i.e., occupational layers) that are difficult to identify visually, such as those we found in Mound C. Findings from this pilot study demonstrate the utility of sediment coring and magnetic susceptibility as effective and feasible methods for developing hypothesis-driven research.
机译:航空影像,沉积物取心,井下磁化率和机械化沟槽开挖等组合技术的应用可以提供有关景观形成和土丘地层的重要信息,特别是如果它们可以用来理解土丘的层序和发育的话。本文回顾了密西西比州Coahoma县Carson土墩(22CO505)最近的取芯和测试发掘的初步发现。航拍图像有助于表征该地点下方的一条裂隙山脊洪水沉积物,并且对岩石学的详细现场描述证实了其存在。随后的沉积物取心和沟槽开挖揭示了史前洪水的性质,表明高强度洪水是裂隙山脊形成的原因,而较低强度的洪水可能是造成该地点土墩建筑中断的原因。这表明卡森定居点是在洪水泛滥的地貌上开始的。井下磁化率与岩石学有效相关;然而,它也有助于辨别人眼难以识别的表面(例如,职业层),例如我们在土墩C中发现的表面。该初步研究的结果表明,沉积物取心和磁化率是有效而可行的方法发展假设驱动的研究。

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