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Impact of assimilating surface salinity from SMOS on ocean circulation estimates

机译:从SMOS吸收表面盐分对海洋环流估计的影响

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In a pilot attempt, the GECCO2 synthesis system is being used to investigate the impact of SMOS sea surface salinity (SSS) observations on estimates of SSS and freshwater fluxes. The paper focuses on the period 2010–2011, during which, in addition to traditional in situ and satellite observations, SMOS SSS is assimilated. A prior SMOS SSS error field is inferred through a comparison of the satellite data with in situ salinity data and reveals large biases (>1 g/kg) in the SMOS product near continents and in the Southern Ocean. Employing this error estimate in the assimilation procedure leads only to an insignificant impact of SMOS SSS on the estimated ocean state. However, when reducing the error artificially by a factor of 10, the SMOS data can be reproduced well in the interior ocean. In this case, the previously remaining positive model bias with respect to in situ salinity is changed to a negative bias while the misfit slightly increased. The clear freshening can be attributed to the SMOS bias with respect to in situ data. The associated increase in freshwater input in the tropical oceans enhances slightly the correspondence of the estimated fluxes to the independent satellite-based estimate from HOAPS except for the South Pacific and South Atlantic. On short-timescales, changes in the estimated surface salinity result primarily from changes in surface freshwater fluxes, while over longer periods ocean dynamics become increasingly more important for changing the near-surface salinity.
机译:在尝试性尝试中,GECCO2合成系统用于研究SMOS海面盐度(SSS)观测值对SSS和淡水通量估算值的影响。本文着重于2010-2011年,在此期间,除了传统的原位和卫星观测外,还对SMOS SSS进行了吸收。通过将卫星数据与原位盐度数据进行比较,可以推断出先前的SMOS SSS误差场,并揭示了各大洲附近和南大洋SMOS产品的较大偏差(> 1 g / kg)。在同化过程中采用此误差估算值只会导致SMOS SSS对估算海洋状态的影响不显着。但是,当人为地将误差减小10倍时,可以在内部海洋中很好地再现SMOS数据。在这种情况下,先前保留的相对于原位盐度的正模型偏差会变为负偏差,而失配会略有增加。清除新鲜感可以归因于相对于原位数据的SMOS偏差。热带海洋中淡水输入的相关增加略微增强了估计通量与HOAPS基于卫星的独立估计(南太平洋和南大西洋除外)的对应关系。在短时间内,估计的表面盐度的变化主要是由表面淡水通量的变化引起的,而在更长的时间内,海洋动力学对于改变近地表盐度变得越来越重要。

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