首页> 外文会议>ISPRS Congress >EXTRACTION OF ICE SHEET LAYERS FROM TWO INTERSECTED RADAR ECHOGRAMS NEAR NEEM ICE CORE IN GREENLAND
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EXTRACTION OF ICE SHEET LAYERS FROM TWO INTERSECTED RADAR ECHOGRAMS NEAR NEEM ICE CORE IN GREENLAND

机译:从格陵兰省内冰芯附近的两种相交雷达转向仪的冰盖层提取

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Accumulation of snow and ice over time result in ice sheet layers. These can be remotely sensed where there is a contrast in electromagnetic properties, which reflect variations of the ice density, acidity and fabric orientation. Internal ice layers are assumed to be isochronous, deep beneath the ice surface, and parallel to the direction of ice flow. The distribution of internal layers is related to ice sheet dynamics, such as the basal melt rate, basal elevation variation and changes in ice flow mode, which are important parameters to model the ice sheet. Radar echo sounder is an effective instrument used to study the sedimentology of the Earth and planets. Ice Penetrating Radar (IPR) is specific kind of radar echo sounder, which extends studies of ice sheets from surface to subsurface to deep internal ice sheets depending on the frequency utilised. In this study, we examine a study site where folded ice occurs in the internal ice sheet south of the North Greenland Eemian ice drilling (NEEM) station, where two intersected radar echograms acquired by the Multi-channel Coherent Radar Depth Sounder (MCoRDS) employed in the NASA's Operation IceBridge (OIB) mission imaged this folded ice. We propose a slice processing flow based on a Radon Transform to trace and extract these two sets of curved ice sheet layers, which can then be viewed in 3-D, demonstrating the 3-D structure of the ice folds.
机译:随着时间的推移,积雪的积累导致冰盖层。这些可以远程感测,其中电磁特性存在对比,这反映了冰密度,酸度和织物取向的变化。假设内部覆盖物在冰面下,深度深度,并平行于冰流方向。内层的分布与冰板动力学有关,例如基础熔体速率,基础升高变化和冰流模式的变化,这是模拟冰盖的重要参数。雷达回声发声器是一种用于研究地球和行星沉积学的有效仪器。冰透过雷达(IPR)是特定的雷达回波声测量仪,其根据所使用的频率延伸到从表面到深层冰盖的冰盖。在这项研究中,我们研究了一项研究现场,折叠冰在北格陵兰冰冰钻(NEEM)站以南的内部冰盖中,其中由采用的多通道相干雷达深度发声器(MCORDS)获取的两个相交的雷达转向图。在美国宇航局的操作IceBridge(Oib)任务上成了这个折叠的冰。我们提出了基于氡变换的切片处理流动以追踪并提取这两组弯曲的冰片层,然后可以在3-D中观察,证明冰折叠的3-D结构。

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