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首页> 外文期刊>The Cryosphere >Surface velocity of the Northeast Greenland Ice Stream (NEGIS): assessment of interior velocities derived from satellite data by GPS
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Surface velocity of the Northeast Greenland Ice Stream (NEGIS): assessment of interior velocities derived from satellite data by GPS

机译:东北格陵兰冰流(Negis)的表面速度:通过GPS评估从卫星数据衍生的内部速度

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The Northeast Greenland Ice Stream (NEGIS) extends around 600 km upstream from the coast to its onset near the ice divide in interior Greenland. Several maps of surface velocity and topography of interior Greenland exist, but their accuracy is not well constrained by in situ observations. Here we present the results from a GPS mapping of surface velocity in an area located approximately 150 km from the ice divide near the East Greenland Ice-core Project (EastGRIP) deep-drilling site. A GPS strain net consisting of 63 poles was established and observed over the years 2015–2019. The strain net covers an area of 35 km by 40 km, including both shear margins. The ice flows with a uniform surface speed of approximately 55 m a?1 within a central flow band with longitudinal and transverse strain rates on the order of 10?4 a?1 and increasing by an order of magnitude in the shear margins. We compare the GPS results to the Arctic Digital Elevation Model and a list of satellite-derived surface velocity products in order to evaluate these products. For each velocity product, we determine the bias in and precision of the velocity compared to the GPS observations, as well as the smoothing of the velocity products needed to obtain optimal precision. The best products have a bias and a precision of ~0.5 m a?1. We combine the GPS results with satellite-derived products and show that organized patterns in flow and topography emerge in NEGIS when the surface velocity exceeds approximately 55 m a?1 and are related to bedrock topography.
机译:东北格陵兰冰河(Negis)在海岸上游延伸到距离内陆格陵兰室内的冰鸿附近的近600公里。存在几种表面速度和室内格陵兰地质的地图,但它们的准确性不会受到原位观察的影响。在这里,我们介绍了位于东格陵兰冰核项目(Eastgrip)深钻头附近的冰鸿区约150公里的地区的地表速度的GPS映射结果。在2015-2019年内建立并观察到由63个杆组成的GPS应变网。拉力网占地面积35公里,距离剪切边距有40公里。冰在中央流动带内的均匀表面速度流动,在中央流动带内,纵向和横向应变速率约为10?4a≤1的速率,并且在剪切边缘中逐渐增加。我们将GPS结果与北极数字高度模型和卫星衍生的表面速度产品列表进行比较,以便评估这些产品。对于每个速度产品,与GPS观察相比,我们确定速度的偏置和精度,以及获得最佳精度所需的速度产品的平滑。最好的产品具有偏差和精度〜0.5米A?1。我们将GPS结果与卫星衍生的产品结合起来,并表明当表面速度超过约55米A 1并且与基岩地形有关时,在非流动和地形中的组织模式出现。

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