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High resolution of glacial ice stratigraphy: A ground-penetrating radar study of Pegasus Runway, McMurdo Station, Antarctica

机译:冰川冰地层的高分辨率:南极麦克默多站飞马跑道的探地雷达研究

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摘要

Ground-penetrating radar (GPR) has been used to detect areas of present or potential structural weakness beneath a 3.2-km snow-covered ice runway on the Ross Ice Shelf, Antarctica. The bandwidths of the transmitted wavelets were centered near 500 MHz. The data show many horizons up to tens of meters long and occurring to about a 9-m depth, below which a brine intrusion limits penetration. The horizons are interpreted as discrete scatterers because of their diffraction nature and loss of higher frequencies with depth. The presence of porous ice or dispersed water is interpreted from wavelet phase. The water may be associated with apparent deepening and fading of the brine horizon. If the above interpretation is correct, water occurs at depths to 3.5 m and extends as much as 40 m horizontally, which is greater and deeper than known previously. At 3.5 m depth, the water may be adsorbed on mineral particles rather than remain free. Migration of the diffractions with a singlelayer migration scheme shows all horizons above the brine layer to be small dielectric perturbations within the ice. Stacking and Hilbert transformation of the data reveal slight folding along the length of the runway. Loss of high-frequency amplitude in the wavelets suggests that higher frequency radar might improve resolution only in the top few meters.
机译:探地雷达(GPR)已被用于探测南极州罗斯冰架上3.2公里积雪的冰跑道下当前或潜在的结构薄弱区域。传输小波的带宽集中在500 MHz附近。数据显示许多地平线长达数十米,深度约9米,盐水侵入以下会限制渗透。视界被解释为离散散射体,因为它们具有衍射特性,并且随着深度的增加会损失更高的频率。小波相解释了多孔冰或分散水的存在。水可能与盐水层的明显加深和褪色有关。如果以上解释正确,则水的深度为3.5 m,水平延伸40 m,这比以前已知的更大和更深。在3.5 m的深度处,水可能会吸附在矿物颗粒上,而不是保持游离状态。用单层迁移方案进行的衍射迁移表明,盐水层以上的所有层位都是冰内的微小介电扰动。数据的堆叠和希尔伯特变换显示出沿跑道长度的轻微折叠。小波中高频振幅的损失表明,更高频率的雷达可能仅在前几米内才能提高分辨率。

著录项

  • 来源
    《Geophysics》 |1996年第6期|p.1653-1663|共11页
  • 作者

    Steven A. Arcone;

  • 作者单位

    U.S. Army, Cold Regions Research and Engineering Laboratory, Hanover, NH 03755-1290;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

  • 入库时间 2022-08-18 00:20:14

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