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Inter-comparison of SMOS and aquarius Sea Surface Salinity: Effects of the dielectric constant and vicarious calibration

机译:SMOS和水瓶座海表面盐度的互相比较:介电常数和缩小校准的影响

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Two spaceborne instruments share the scientific objective of mapping the global Sea Surface Salinity (SSS). ESA's Soil Moisture and Ocean Salinity (SMOS) and NASA's Aquarius use L-band (1.4 GHz) radiometry to retrieve SSS. We find that SSS retrieved by SMOS is generally lower than SSS retrieved by Aquarius, except for very cold waters where SMOS SSS is higher overall. The spatial distribution of the differences in SSS is similar to the distribution of sea surface temperature. There are several differences in the retrieval algorithm that could explain the observed SSS differences. We assess the impact of the dielectric constant model and the ancillary sea surface salinity used by both missions for calibrating the radiometers and retrieving SSS. The differences in dielectric constant model produce differences in SSS of the order of 0.3 psu and exhibit a dependence on latitude and temperature. We use comparisons with the Argo in situ data to assess the performances of the model in various regions of the globe. Finally, the differences in the ancillary sea surface salinity products used to perform the vicarious calibration of both instruments are relatively small (0.1 psu), but not negligible considering the requirements for spaceborne remote sensing of SSS.
机译:两个星载仪器共享映射全球海表面盐度(SSS)的科学目标。 ESA的土壤水分和海洋盐度(SMOS)和NASA的水瓶座使用L波段(1.4 GHz)辐射测量来检索SSS。我们发现SMOS检索的SSS通常低于Aquarius检索的SSS,除了非常冷的水域,SMOS SSS总体上更高。 SSS差异的空间分布类似于海表面温度的分布。检索算法有几个差异可以解释观察到的SSS差异。我们评估介电常数和辅助海表面盐的影响,用于校准辐射尺和检索SSS。介电常数模型的差异产生0.3psu的SSS的差异,并呈现对纬度和温度的依赖性。我们使用与ARGO的比较原位数据来评估全球各个地区模型的表现。最后,用于执行两个仪器的替代校准的辅助海表面盐度产品的差异相对较小(0.1psu),但考虑到SSS的空间遥感要求并不可忽略。

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