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首页> 外文期刊>Geophysical Research Letters >Arctic Ocean gravity, geoid and sea-ice freeboard heights from ICESat and GRACE
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Arctic Ocean gravity, geoid and sea-ice freeboard heights from ICESat and GRACE

机译:来自ICESat和GRACE的北冰洋重力,大地水准面和海冰干舷高度

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摘要

ICESat laser measurements provide a high-resolution mapping of the sea-ice surface of the Arctic Ocean, which can be inverted to determine gravity anomalies and sea-ice freeboard heights by a +ACI-lowest-level'' filtering scheme. In this paper we use updated terrestrial gravity data from the Arctic Gravity Project in combination with GRACE gravity field models to derive an improved Arctic geoid model. This model is then used to convert ICESat measurements to sea-ice freeboard heights with a coarse lowest-level surface method. The derived freeboard heights show a good qualitative agreement to the coverage of multi-year sea-ice+ADs- however, comparison to an airborne lidar underflight north of Greenland shows that the lowest-level filtering scheme may introduce a bias. We finally use the ICESat and GRACE results to derive new gravity anomalies by Fourier inversion. The satellite-only gravity field shows all major tectonic features of the Arctic Ocean, and has an accuracy of 6 mGal compared to recent airborne gravity data, illustrating the usefulness of ICESat data for gravity field determination.
机译:ICESat激光测量提供了北冰洋海冰表面的高分辨率地图,可以通过+ ACI-最低级别''过滤方案将其反转以确定重力异常和海冰干舷高度。在本文中,我们将来自北极重力项目的最新地面重力数据与GRACE重力场模型结合使用,以得出改进的北极大地水准面模型。然后,使用该模型将ICESat测量值通过最低的粗糙表面方法转换为海冰干舷高度。得出的干舷高度与多年海冰+ ADs的覆盖范围具有很好的定性一致性,但是,与格陵兰以北的机载激光雷达飞行比较显示,最低层过滤方案可能会产生偏差。最后,我们使用ICESat和GRACE结果通过傅立叶反演得出新的重力异常。仅卫星重力场显示了北冰洋的所有主要构造特征,与最近的机载重力数据相比,精度为6 mGal,这说明了ICESat数据对于重力场确定的有用性。

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