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SMOS-derived thin sea ice thickness: algorithm baseline, product specifications and initial verification

机译:SMOS衍生的薄海冰厚度:算法基线,产品规格和初始验证

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摘要

Following the launch of ESA's Soil Moisture and Ocean Salinity (SMOS) mission, it has been shown that brightness temperatures at a low microwave frequency of 1.4 GHz (L-band) are sensitive to sea ice properties. In the first demonstration study, sea ice thickness up to 50 cm has been derived using a semi-empirical algorithm with constant tie-points. Here, we introduce a novel iterative retrieval algorithm that is based on a thermodynamic sea ice model and a three-layer radiative transfer model, which explicitly takes variations of ice temperature and ice salinity into account. In addition, ice thickness variations within the SMOS spatial resolution are considered through a statistical thickness distribution function derived from high-resolution ice thickness measurements from NASA's Operation IceBridge campaign. This new algorithm has been used for the continuous operational production of a SMOS-based sea ice thickness data set from 2010 on. The data set is compared to and validated with estimates from assimilation systems, remote sensing data, and airborne electromagnetic sounding data. The comparisons show that the new retrieval algorithm has a considerably better agreement with the validation data and delivers a more realistic Arctic-wide ice thickness distribution than the algorithm used in the previous study (Kaleschke et al., 2012).
机译:在启动ESA的土壤湿度和海洋盐度(SMOS)任务后,已经表明,在1.4 GHz(L波段)的低微波频率下,亮度温度对海冰特性敏感。在第一个示范研究中,使用具有恒定连接点的半经验算法得出了最大50厘米的海冰厚度。在这里,我们介绍一种基于热力学海冰模型和三层辐射传输模型的新颖的迭代检索算法,该算法明确考虑了冰温度和冰盐度的变化。此外,通过统计厚度分布函数考虑了SMOS空间分辨率内的冰厚度变化,该统计厚度分布函数来自于NASA的Operation IceBridge活动的高分辨率冰厚度测量。从2010年开始,该新算法已用于连续运行基于SMOS的海冰厚度数据集。将该数据集与同化系统,遥感数据和机载电磁探测数据的估计值进行比较并进行验证。比较表明,新的检索算法与验证数据具有更好的一致性,并且比以前的研究中使用的算法(Kaleschke等,2012)提供了更现实的北极冰层厚度分布。

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