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首页> 外文期刊>Geophysical Research Letters >Geoid displacement about Greenland resulting from past and present-day mass changes in the Greenland Ice Sheet - art. no. L06617
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Geoid displacement about Greenland resulting from past and present-day mass changes in the Greenland Ice Sheet - art. no. L06617

机译:格陵兰冰原过去和现在的质量变化导致格陵兰大地水准面位移-艺术。没有。 L06617

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Predictions are presented of secular changes in the geoid arising from glacial-isostatic adjustment (GIA) following the Last Glacial Maximum and from present-day mass changes in the Greenland Ice Sheet (GIS). Geoid displacement from ongoing GIA is dominated by ice-load changes outside of Greenland at lower spherical-harmonic degrees (< 30), and modified at higher degrees by the recent ( last few thousand years) GIS history. Ice-margin mass changes dominate the present-day GIS geoid response, although comparable signals are obtained when considering the uncertainty range in the higher-elevation changes (> 2000 m). Spatial variability is noted when the present-day GIS response is expanded to degree and order 32. This is detectable by GRACE when assuming an optimistic accuracy, but is too small by a factor of ca. 3 for an alternate accuracy estimate. Present-day GIS geoid displacement rates are generally less than the equivalent response from ice-mass changes in Antarctica, Patagonia and Alaska. [References: 19]
机译:预测了由于上次冰河最大值之后的冰等静力调整(GIA)以及格陵兰冰原(GIS)当前的质量变化而引起的大地水准面的长期变化。正在进行的GIA产生的大地水准面位移主要由格陵兰岛以外较低的球谐度(<30)的冰负荷变化决定,最近(过去几千年)的GIS历史在较高的度数上得到了修正。尽管考虑到高海拔变化(> 2000 m)的不确定性范围时可获得可比较的信号,但冰边界质量变化在当今的GIS大地水准面响应中占主导地位。当当今的GIS响应扩展到阶次和阶数32时,会注意到空间变异性。当假设乐观的准确性时,GRACE可以检测到空间变异性,但是它的大小大约为ca。 3作为替代精度估计。当前的GIS大地水准面位移速率通常小于南极,巴塔哥尼亚和阿拉斯加冰块变化的等效响应。 [参考:19]

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