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首页> 外文期刊>The Cryosphere Discussions >Using satellite laser ranging to measure ice mass change in Greenland and Antarctica
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Using satellite laser ranging to measure ice mass change in Greenland and Antarctica

机译:使用卫星激光测距仪测量格陵兰岛和南极洲的冰块变化

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A least squares inversion of satellite laser ranging (SLR) data over Greenland and Antarctica could extend gravimetry-based estimates of mass loss back to the early 1990s and fill any future gap between the current Gravity Recovery and Climate Experiment (GRACE) and the future GRACE Follow-On mission. The results of a simulation suggest that, while separating the mass change between Greenland and Antarctica is not possible at the limited spatial resolution of the SLR data, estimating the total combined mass change of the two areas is feasible. When the method is applied to real SLR and GRACE gravity series, we find significantly different estimates of inverted mass loss. There are large, unpredictable, interannual differences between the two inverted data types, making us conclude that the current 5×5 spherical harmonic SLR series cannot be used to stand in for GRACE. However, a comparison with the longer IMBIE time series suggests that on a 20-year time frame, the inverted SLR series' interannual excursions may average out, and the long-term mass loss estimate may be reasonable.
机译:格陵兰岛和南极洲上的卫星激光测距(SLR)数据的最小二乘反演可以将基于重量分析的质量损失估计值扩展到1990年代初,并填补当前重力恢复和气候实验(GRACE)与未来GRACE之间的任何未来差距后续任务。模拟结果表明,虽然在有限的SLR数据空间分辨率下不可能将格陵兰岛和南极洲之间的质量变化分开,但估算这两个区域的总合并质量变化是可行的。当将该方法应用于实际SLR和GRACE重力序列时,我们发现反向质量损失的估计值明显不同。两种取反的数据类型之间存在较大的,不可预测的年际差异,这使我们得出结论,当前的5×5球谐SLR系列不能用来代替GRACE。但是,与更长的IMBIE时间序列进行比较表明,在20年的时间范围内,倒置的SLR系列的年际偏移可能会平均,并且长期的质量损失估计可能是合理的。

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