Three‐dimensional investigation of an open‐ and a closed‐system Pingo in northwestern Canada

IF 3 3区 地球科学 Q2 GEOGRAPHY, PHYSICAL
Julius Kunz, C. Kneisel
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引用次数: 7

Abstract

The present study presents three‐dimensional investigations of a hydrostatic pingo in the Mackenzie Delta region and a hydraulic pingo in the Ogilvie Mountains and contributes to a better understanding about the internal structures of the two pingo types. A combined approach using quasi‐three‐dimensional electrical resistivity tomography, ground‐penetrating radar and frost probing allowed a clear delineation of frozen and unfrozen areas in the subsurface. At the hydrostatic pingo a massive ice core as well as a surrounding talik could be detected, but the location of the ice core and the talik differs from previous published assumptions. In contrast to acknowledged theory, at our site the massive ice core is not located in the center of the pingo but at the western edge, whereas the eastern flank is underlain by a talik, which surrounds the massive ice core. At the hydraulic pingo, the expected internal structure could be confirmed and the pathway of upwelling water could also be detected. The combined approach of the applied methods represents the first known three‐dimensional geoelectrical investigation of pingos and provides new insights into the internal structure and architecture of the two different pingo types. The chosen approach allows further conclusions on the formation of these permafrost‐affected landforms.
加拿大西北部一个开放系统和一个封闭系统Pingo的三维调查
本文对麦肯齐三角洲地区的静压型平原平原和奥吉维山脉的水力型平原平原进行了三维研究,有助于更好地了解这两种平原平原的内部构造。采用准三维电阻率层析成像、探地雷达和霜冻探测相结合的方法,可以清晰地描绘地下冻结和未冻结区域。在流体静力pingo中,可以检测到一个巨大的冰芯以及周围的谈话,但冰芯和谈话的位置与先前发表的假设不同。与公认的理论相反,在我们的地点,巨大的冰核不是位于pingo的中心,而是位于西部边缘,而东部侧翼则被一个围绕着巨大冰核的谈话所包围。在水力测试中,可以确定预期的内部结构,并检测上升水的路径。应用方法的组合方法代表了已知的第一个pingo的三维地电调查,并为两种不同类型的pingo的内部结构和结构提供了新的见解。所选择的方法可以进一步得出这些受永久冻土层影响的地貌形成的结论。
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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来源期刊
CiteScore
9.70
自引率
8.00%
发文量
43
审稿时长
>12 weeks
期刊介绍: Permafrost and Periglacial Processes is an international journal dedicated to the rapid publication of scientific and technical papers concerned with earth surface cryogenic processes, landforms and sediments present in a variety of (Sub) Arctic, Antarctic and High Mountain environments. It provides an efficient vehicle of communication amongst those with an interest in the cold, non-glacial geosciences. The focus is on (1) original research based on geomorphological, hydrological, sedimentological, geotechnical and engineering aspects of these areas and (2) original research carried out upon relict features where the objective has been to reconstruct the nature of the processes and/or palaeoenvironments which gave rise to these features, as opposed to purely stratigraphical considerations. The journal also publishes short communications, reviews, discussions and book reviews. The high scientific standard, interdisciplinary character and worldwide representation of PPP are maintained by regional editorial support and a rigorous refereeing system.
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