在复杂的永久冻土环境中,共偏移GPR测量的潜力:以北西伯利亚为例

S. Schennen, J. Tronicke
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引用次数: 1

摘要

冻土环境为探地雷达反射成像提供了典型的有利条件。这片常年冻土的地下结构包括独特而复杂的地下结构,如冰楔。这些特征代表了2D和3D常见偏移测量策略的挑战性目标。在这里,我们通过综合和实地数据实例评估了探地雷达成像北西伯利亚复杂永久冻土环境的潜力。我们使用从露头照片中导出的逼真的二维合成模型来研究共偏移数据在成像与冰楔和沉积层相关的典型结构方面的潜力。这项综合研究表明,全面的测量和处理策略,包括适当的数据迁移,对于获得有意义的地下模型至关重要。这些发现对于处理和解释我们位于新西伯利亚群岛的现场记录的3D数据集非常有用。在这里,经过仔细的处理,我们能够识别和成像巨大冰楔之间和下面的低温地层界面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The potential of common-offset GPR surveying in complex permafrost environments: An example from Northern Siberia
Permafrost environments provide typically favorable conditions for GPR reflection imaging. The subsurface architecture of this perennially frozen ground comprises unique and complex subsurface structures such as ice wedges. These features represent challenging targets for 2D and 3D common offset surveying strategies. Here, we evaluate the potential of GPR to image complex permafrost environments in Northern Siberia using synthetic and field data examples. We use a realistic 2D synthetic model derived from an outcrop photograph to investigate the potential of common-offset data to image typical structures related to ice wedges and sedimentary layers. This synthetic study illustrates that a thorough surveying and processing strategy including a proper data migration is essential to derive a meaningful subsurface model. These findings are found to be extremely useful to process and interpret a 3D data set recorded on our field site located on the New Siberian Archipelago. Here, after careful processing we are able to identify and image cryostratigraphic interfaces between and below massive ice wedges.
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