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Arctic sea surface height variability and change from satellite radar altimetry and GRACE, 2003-2014

机译:北极海面高度变化与卫星雷达高度测量和GRaCE的变化,2003-2014

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摘要

Arctic sea surface height (SSH) is poorly observed by radar altimeters due to the poor coverage of the polar oceans provided by conventional altimeter missions and because large areas are perpetually covered by sea ice, requiring specialized data processing. We utilize SSH estimates from both the ice-covered and ice-free ocean to present monthly estimates of Arctic Dynamic Ocean Topography (DOT) from radar altimetry south of 81.5°N and combine this with GRACE ocean mass to estimate steric height. Our SSH and steric height estimates show good agreement with tide gauge records and geopotential height derived from Ice-Tethered Profilers. The large seasonal cycle of Arctic SSH (amplitude ∼5 cm) is dominated by seasonal steric height variation associated with seasonal freshwater fluxes, and peaks in October–November. Overall, the annual mean steric height increased by 2.2 ± 1.4 cm between 2003 and 2012 before falling to circa 2003 levels between 2012 and 2014 due to large reductions on the Siberian shelf seas. The total secular change in SSH between 2003 and 2014 is then dominated by a 2.1 ± 0.7 cm increase in ocean mass. We estimate that by 2010, the Beaufort Gyre had accumulated 4600 km3 of freshwater relative to the 2003–2006 mean. Doming of Arctic DOT in the Beaufort Sea is revealed by Empirical Orthogonal Function analysis to be concurrent with regional reductions in the Siberian Arctic. We estimate that the Siberian shelf seas lost ∼180 km3 of freshwater between 2003 and 2014, associated with an increase in annual mean salinity of 0.15 psu yr−1. Finally, ocean storage flux estimates from altimetry agree well with high-resolution model results, demonstrating the potential for altimetry to elucidate the Arctic hydrological cycle.
机译:雷达高度计无法很好地观测到北极海面高度(SSH),这是由于常规高度计任务提供的极地海洋覆盖不佳,并且由于大面积的海面永久被海冰覆盖,因此需要专门的数据处理。我们利用来自冰覆盖和无冰海洋的SSH估算值,以月度来估算北纬81.5°以南的雷达测高仪的北极动态海洋地形(DOT),并将其与GRACE海洋质量相结合来估算空间高度。我们的SSH和空间高度估计与潮汐仪记录和源自冰系断层廓线仪的地势高度高度吻合。北极SSH的较大季节性周期(振幅约5厘米)主要是与季节性淡水通量相关的季节性空间高度变化,并在10月至11月达到峰值。总体而言,由于西伯利亚陆架海域的大幅减少,2003年至2012年间年平均空间高度增加了2.2±1.4厘米,然后在2012年至2014年间下降至约2003年的水平。 SSH在2003年至2014年间的总体长期变化以海洋质量增加2.1±0.7厘米为主导。我们估计,相对于2003-2006年的平均值,到2010年,Beaufort Gyre积累了4600 km3的淡水。经验正交函数分析揭示了波弗特海北极DOT的圆顶与西伯利亚北极地区的减少同时发生。我们估计,西伯利亚陆架海在2003年至2014年之间损失了约180 km3的淡水,这与年平均盐度增加0.15 psu yr-1有关。最后,来自测高仪的海洋储量通量估计值与高分辨率模型结果非常吻合,表明了测高仪阐明北极水文循环的潜力。

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