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Acquisition of a 3 min, two-dimensional glacier velocity field with terrestrial radar interferometry

机译:采集3分钟的二维冰川速度场,具有地面雷达干涉测量法

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Outlet glaciers undergo rapid spatial and temporal changes in flow velocity during calving events. Observing such changes requires both high temporal and high spatial resolution methods, something now possible with terrestrial radar interferometry. While a single such radar provides line-of-sight velocity, two radars define both components of the horizontal flow field. To assess the feasibility of obtaining the two-dimensional (2-D) flow field, we deployed two terrestrial radar interferometers at Jakobshavn Isbrae, a major outlet glacier on Greenland's west coast, in the summer of 2012. Here, we develop and demonstrate a method to combine the line-of-sight velocity data from two synchronized radars to produce a 2-D velocity field from a single (3 min) interferogram. Results are compared with the more traditional feature-tracking data obtained from the same radar, averaged over a longer period. We demonstrate the potential and limitations of this new dual-radar approach for obtaining high spatial and temporal resolution 2-D velocity fields at outlet glaciers.
机译:出口冰川在产犊事件期间经过流速的快速空间和时间变化。观察这种变化需要高时和高空间分辨率的方法,现在可以具有陆地雷达干涉测量。虽然单个这样的雷达提供了瞄准速度,但两个雷达限定了水平流场的两个部件。为了评估获得二维(2-D)流场的可行性,我们在2012年夏天部署了Jakobshavn Isbrae的两个陆地雷达干涉仪,在2012年夏天。在这里,我们开发并展示了一个将视速速度数据组合到两个同步雷达的方法,从单个(3分钟)干扰图产生2-D速度场。将结果与从相同雷达获得的更传统的特征跟踪数据进行比较,在更长的时间段内平均。我们展示了这种新的双雷达方法在出口冰川处获得高空间和时间分辨率2-D速度场的潜在和局限性。

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