首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >RADARSAT-2 D-InSAR for ground displacement in permafrost terrain, validation from Iqaluit Airport, Baffin Island, Canada
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RADARSAT-2 D-InSAR for ground displacement in permafrost terrain, validation from Iqaluit Airport, Baffin Island, Canada

机译:RADARSAT-2 D-InSAR用于多年冻土地区的地面位移,加拿大巴芬岛伊卡卢伊特机场进行了验证

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The use of Differential Interferometric Synthetic Aperture Radar (D-InSAR) is rapidly gaining acceptance as a source of ground displacement information for permafrost regions. The accuracy of the information however, is still not well established. This paper uses a stack of RADARSAT-2 D-InSAR data to map seasonal ground displacement at the Iqaluit Airport, Baffin Island, Canada. The accuracy and information content of the D-InSAR products are evaluated with a variety of ground truth data. The D-InSAR derived seasonal ground displacement patterns align well with surficial geology units and reflect the thaw settlement characteristics of the sediments; they also identify localised displacement patterns in the vicinity of features such as ice wedges and frost cracks. Comparisonswith ground settlementmeasurements fromin-situ thaw tubes indicate sub-centimetre agreement in dry areas. In low lying wet areas however, subject to saturation and flooding, the D-InSAR stack significantly underestimates the true settlement, detecting only 3.7 cmof the 8.5 cmthaw tube measurement. The combination of high phase gradients and poor coherence over intermittently flooded surfaces makes it challenging to preserve reliable phase measurements in these areas. Information from electromagnetic surveys shows that some surface displacement is related to sub-surface conditions (b6 m depth), possibly conditions related to the presence and movement of water in the active layer and to a lesser extent, unfrozen water content within the permafrost.
机译:差分干涉合成孔径雷达(D-InSAR)的使用正迅速被接受为永久冻土区地面位移信息的来源。但是,信息的准确性仍未得到很好的确定。本文使用一堆RADARSAT-2 D-InSAR数据来绘制加拿大巴芬岛Iqaluit机场的季节性地面位移图。 D-InSAR产品的准确性和信息含量可通过各种地面真实数据进行评估。 D-InSAR推导出的季节性地面位移模式与表层地质单元非常吻合,并反映了沉积物的融化沉降特征;他们还确定了诸如冰楔和霜冻裂缝等特征附近的局部位移模式。与原位解冻管的地面沉降测量结果的比较表明,在干燥地区亚厘米级的一致性。然而,在低洼潮湿地区,由于饱和和洪水泛滥,D-InSAR叠层大大低估了真实沉降,在8.5厘米融管测量中仅检测到3.7厘米。高相位梯度和间歇性淹没表面上的较差相干性相结合,使得在这些区域中保持可靠的相位测量具有挑战性。电磁勘测的信息表明,某些表面位移与地下条件(b6 m深度)有关,可能与活性层中水的存在和运动有关,而永久冻土中未冻结的水含量则较小。

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