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The Impact of Geophysical Corrections on Sea-Ice Freeboard Retrieved from Satellite Altimetry

机译:地球物理校正对卫星测高仪提取的海冰干舷的影响

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Satellite altimetry is the only method to monitor global changes in sea-ice thickness and volume over decades. Such missions (e.g., ERS, Envisat, ICESat, CryoSat-2) are based on the conversion of freeboard into thickness by assuming hydrostatic equilibrium. Freeboard, the height of the ice above the water level, is therefore a crucial parameter. Freeboard is a relative quantity, computed by subtracting the instantaneous sea surface height from the sea-ice surface elevations. Hence, the impact of geophysical range corrections depends on the performance of the interpolation between subsequent leads to retrieve the sea surface height, and the magnitude of the correction. In this study, we investigate this impact by considering CryoSat-2 sea-ice freeboard retrievals in autumn and spring. Our findings show that major parts of the Arctic are not noticeably affected by the corrections. However, we find areas with very low lead density like the multiyear ice north of Canada, and landfast ice zones, where the impact can be substantial. In March 2015, 7.17% and 2.69% of all valid CryoSat-2 freeboard grid cells are affected by the ocean tides and the inverse barometric correction by more than 1 cm. They represent by far the major contributions among the impacts of the individual corrections.
机译:卫星测高是监测数十年来全球海冰厚度和体积变化的唯一方法。此类任务(例如ERS,Envisat,ICESat,CryoSat-2)是基于假定静水力平衡将干舷转换为厚度而建立的。因此,干舷(高于水位的冰的高度)是至关重要的参数。干舷是相对量,是通过从海冰表面高程中减去瞬时海面高度来计算的。因此,地球物理范围校正的影响取决于后续引线之间进行插值以获取海面高度的性能以及校正的幅度。在这项研究中,我们通过考虑秋季和春季CryoSat-2海冰干舷检索来研究这种影响。我们的发现表明,北极地区的大部分地区并未受到更正的明显影响。但是,我们发现铅密度非常低的地区,例如加拿大北部的多年冰区和陆上冰区,这些地区的影响可能很大。 2015年3月,所有有效CryoSat-2干舷网格单元的7.17%和2.69%受海潮和反气压校正的影响超过1 cm。到目前为止,它们代表了各个更正影响中的主要贡献。

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