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首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >Spatial–Temporal Variability of Great Slave Lake Levels From Satellite Altimetry
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Spatial–Temporal Variability of Great Slave Lake Levels From Satellite Altimetry

机译:卫星测高法对大奴湖水位的时空变化

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摘要

The study of lake-level variability of five selected areas across Great Slave Lake (GSL) using satellite altimetry is presented. Data from Topex/Poseidon (TP) and Jason-1 (J1) missions at GSL for the ice-free seasons of 1993–2002 and 2002–2008, respectively, reveal lower performance of J1 for areas closer to 20 km from the coastline compared to 10 km for TP. A calculated bias of 6.99 cm was subtracted to J1 range since TP has better tracking of shoreline waters and lower data rejection. High correlation coefficients for the relative rate of change between lake altimetry heights (LAHs) and corresponding gauge data for Yellowknife Bay and Hay River support the use of LAH changes as effective indicators of variability at GSL. Differences in LAH between the five areas indicate a nonuniform slope which we relate more to variability of the surface water temperature distribution than wind effects. The deeper and colder areas are associated to the least change of LAH gradient through time; therefore, they represent ideal areas to study interannual climate variability. A potential correlation between areas with higher variability in LAH gradients and higher changes in modeled surface water temperatures during the 2003 ice free season is observed.
机译:提出了利用卫星测高法研究大奴湖(GSL)五个选定区域的湖面变化的方法。来自Topex / Poseidon(TP)和Jason-1(J1)在GSL的1993-2002年和2002-2008年无冰季节的任务数据分别显示,与海岸线相距20公里的地区,J1的性能较低TP达到10公里。由于TP可以更好地跟踪海岸线水域并降低数据拒绝率,因此可以将计算出的6.99 cm的偏差减去J1范围。湖泊高程高度(LAH)之间的相对变化率的高相关系数以及耶洛奈夫湾和海河的相应尺度数据支持将LAH变化用作GSL变异性的有效指标。五个区域之间的LAH差异表明坡度不均匀,与风效应相比,我们更关注地表水温度分布的变化。较深和较冷的区域与LAH梯度随时间的变化最小有关。因此,它们是研究年际气候变化的理想领域。在2003年无冰季节,LAH梯度变化较大的区域与地表水温度的较大变化之间存在潜在的相关性。

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