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Widespread low rates of Antarctic glacial isostatic adjustment revealed by GPS observations

机译:GPS观测揭示南极冰川等静压调整的普遍低速

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摘要

Bedrock uplift in Antarctica is dominated by a combination of glacial isostatic adjustment (GIA) and elastic response to contemporary mass change. Here, we present spatially extensive GPS observations of Antarctic bedrock uplift, using 52% more stations than previous studies, giving enhanced coverage, and with improved precision. We observe rapid elastic uplift in the northern Antarctic Peninsula. After considering elastic rebound, the GPS data suggests that modeled or empirical GIA uplift signals are often over?estimated, par t icularly the magnitudes of the signal maxima. Our observation that GIA uplift is misrepresented by modeling (weighted root?meansquares of observation?model differences: 4.9–5.0 mm/yr) suggests that, apart from a few regions where large ice mass loss is occurring, the spatial pattern of secular ice mass change derived from Gravity Recovery and Climate Experiment (GRACE) data and GIA models may be unreliable, and that several recent secular Antarctic ice mass loss estimates are systematically biased, mainly too high.
机译:南极洲的基岩隆起主要由冰川等静压调整(GIA)和对当代质量变化的弹性响应共同作用。在这里,我们介绍了南极基岩隆起的空间广泛的GPS观测结果,比以前的研究多使用了52%的观测站,从而扩大了覆盖范围,并提高了精度。我们在南极半岛北部观察到快速的弹性隆升。在考虑了弹性回弹之后,GPS数据表明,通常会高估模型化或经验性GIA提升信号,尤其是信号最大值的幅度。我们的观测表明,GIA抬升是通过模型来表示的(加权均方根-观察值的均方差-模型差异:4.9-5.0 mm / yr)表明,除了少数发生大冰块损失的区域以外,长期冰块的空间格局由重力恢复和气候实验(GRACE)数据和GIA模型得出的变化可能是不可靠的,而且近期对南极世俗冰块质量损失的估计有系统地偏见,主要是过高。

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