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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Glacial and tidal strain of landfast sea ice in Terra Nova Bay, East Antarctica, observed by interferometric SAR techniques
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Glacial and tidal strain of landfast sea ice in Terra Nova Bay, East Antarctica, observed by interferometric SAR techniques

机译:赤纬新湾地区陆地冰冰和潮汐菌株,东南南极洲,由干涉式特区技术观察

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The dynamics of landfast sea ice, also called fast ice for short, has a large influence on the variability of polynyas and marine ecosystems, and the logistics for research stations near the Antarctic coast. Therefore, it is important to accurately measure the strain of fast ice and its seasonal variations, and to identify the cause of stresses on the ice. In this paper, we separate the strains from glacial stress and tidal stress of fast ice near the Campbell Glacier Tongue (CGT) in Terra Nova Bay, East Antarctica. This was done using observations from a series of one-day tandem COSMO-SkyMed Interferometric Synthetic Aperture Radar (InSAR) images obtained from December 2010 to January 2012. Firstly, we discriminated fast ice from pack ice and open water by analyzing the interferometric coherence values. We then identified the characteristics of the strains by investigating the equidisplacement lines of fringes in weekly InSAR and double-differential InSAR (DDInSAR) images. The weekly InSAR images predominantly showed glacial shear strain of the fast ice with fringes parallel to the sides of the CGT. This was due to the cumulative flow of the CGT for a week, while oscillating tidal signals were relatively small. The DDInSAR images, which cancelled glacial strain rates in two one-day InSAR images, showed a deformation of the fast ice by tidal sea surface tilt, with the fringes parallel to the coastline. Based on the unique characteristics of these strains, we separated them from the one-day InSAR images by decomposing the fringe patterns into glacial and tidal strain. Glacial shear strain rates of fast ice attached to the east of the CGT decreased from May to August owing to ice thickening and then stabilized until December. Those to the west of the CGT increased from May to July. This was possibly due to bottom melting of the ice by the increased ocean circulation during the expansion period of the nearby polynya. The glacial strain then decreased until December bec
机译:陆地海冰的动态,也称为短暂的冰,对多玉脂和海洋生态系统的可变性以及南极海岸附近的研究站的物流影响很大。因此,重要的是准确地测量快速冰和季节变化的应变,并识别冰上的应力的原因。在本文中,我们将菌株与露天冰川舌头(CGT)附近的快速冰附近的冰川压力和潮气应力分开。这是使用从2010年12月到2012年12月获得的一系列单日串联Cosmo-Skymed干涉机雷达(INSAR)图像的观测完成。首先,通过分析干涉式相干性值,我们通过分析了从包冰和开放水中的快速冰块。然后,我们通过在每周insar和双差分insar(ddinsar)图像中调查条纹的平等剥离线来识别菌株的特征。每周的insar图像主要显示出快速冰的冰川剪切应变,与CGT的侧面平行的条纹。这是由于CGT的累积流量一周,而振荡潮汐信号相对较小。在两个一天的Insar图像中取消了冰川应变率的DDInsar图像,通过潮汐海面倾斜,与海岸线平行的条纹表示快速冰的变形。基于这些菌株的独特特征,我们通过将边缘图案分解成冰川和潮汐菌株来将它们与一天的insar图像分开。 CGT东部的快速冰的冰川剪切应变率从5月到8月由于冰增厚而减少,然后稳定到12月。 CGT西部的人从5月到7月增加。这可能是由于在附近的Polynya的膨胀期间增加了海洋循环的冰底熔化。然后冰川菌株减少到12月

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