首页> 外文期刊>Permafrost and Periglacial Processes >Application of Ground-Penetrating Radar Imagery for Three-Dimensional Visualisation of Near-Surface Structures in Ice-Rich Permafrost, Barrow, Alaska
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Application of Ground-Penetrating Radar Imagery for Three-Dimensional Visualisation of Near-Surface Structures in Ice-Rich Permafrost, Barrow, Alaska

机译:探地雷达成像技术在阿拉斯加巴罗河冰富多年冻土近地表结构三维可视化中的应用

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摘要

Three-dimensional ground-penetrating radar (3D GPR) was used to investigate the subsurface structure of ice-wedge polygons and other features of the frozen active layer and near-surface permafrost near Barrow, Alaska. Surveys were conducted at three sites located on landscapes of different geomorphic age. At each site, sediment cores were collected and characterised to aid interpretation of GPR data. At two sites, 3D GPR was able to delineate subsurface ice-wedge networks with high fidelity. Three-dimensional GPR data also revealed a fundamental difference in ice-wedge morphology between these two sites that is consistent with differences in landscape age. At a third site, the combination of two-dimensional and 3D GPR revealed the location of an active frost boil with ataxitic cryostructure. When supplemented by analysis of soil cores, 3D GPR offers considerable potential for imaging, interpreting and 3D mapping of near-surface soil and ice structures in permafrost environments.
机译:三维探地雷达(3D GPR)用于研究冰楔形多边形的地下结构以及阿拉斯加巴罗附近冻结的活性层和近地表永久冻土的其他特征。在不同地貌年龄的景观的三个地点进行了调查。在每个站点上,都对沉积物岩心进行了收集和表征,以帮助解释GPR数据。在两个站点,3D GPR能够以高保真度描绘出地下冰楔网络。三维GPR数据还揭示了这两个地点之间冰楔形态的根本差异,这与景观年龄的差异是一致的。在第三个位置,二维和3D GPR的组合显示了具有霜冻冷冻结构的活性霜沸腾的位置。如果对土壤核心进行分析,则3D GPR在多年冻土环境中为近地表土壤和冰结构的成像,解释和3D绘图提供了巨大的潜力。

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