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Helicopter-borne and ground-towed radar surveys of the Fourcade Glacier on King George Island, Antarctica

机译:南极乔治王岛的Fourcade冰川的直升机载和拖曳式雷达勘测

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摘要

To determine subglacial topography and internal features of the Fourcade Glacier on King George Island in Antarctica, helicopter-borne and ground-towed ground-penetrating radar (GPR) data were recorded along four profiles in November 2006. Signature deconvolution, f-k migration velocity analysis, and finite-difference depth migration applied to the mixed-phase, single-channel, ground-towed data, were effective in increasing vertical resolution, obtaining the velocity function, and yielding clear depth images, respectively. For the helicopter-borne GPR, migration velocities were obtained as root-mean-squared velocities in a two-layer model of air and ice. The radar sections show rugged subglacial topography, englacial sliding surfaces, and localised scattering noise. The maximum depth to the basement is over 79 m in the subglacial valley adjacent to the south-eastern slope of the divide ridge between Fourcade and Moczydlowski Glaciers. In the ground-towed profile, we interpret a complicated conduit above possible basal water and other isolated cavities, which are a few metres wide. Near the terminus, the GPR profiles image sliding surfaces, fractures, and faults that will contribute to the tidewater calving mechanism forming icebergs in Potter Cove.
机译:为了确定南极洲乔治国王岛上的Fourcade冰川的冰下地形和内部特征,2006年11月沿四个剖面记录了直升机机载和地面拖曳的探地雷达(GPR)数据。签名反褶积,fk迁移速度分析,有限差分深度偏移和分别应用于混合相,单通道地面拖曳数据的深度偏移分别有效地提高了垂直分辨率,获得了速度函数并产生了清晰的深度图像。对于直升飞机上的GPR,在两层空气和冰层模型中,迁移速度是均方根速度。雷达部分显示出崎gla的冰川下地形,冰川滑动面和局部散射噪声。在Fourcade和Moczydlowski冰川之间的分隔山脊的东南坡附近的冰下山谷,地下室的最大深度超过79 m。在地面拖曳剖面中,我们解释了可能的基础水和其他几米宽的孤立空腔上方的复杂管道。在总站附近,GPR剖面图像显示了滑动表面,裂缝和断层,这将有助于潮水产犊机制在波特湖中形成冰山。

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