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Sea-surface temperature and salinity product comparison against external in situ data in the Arctic Ocean

机译:北冰洋海表温度和盐度乘积与外部原位数据的比较

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摘要

Sea-surface temperature and salinity (SST/S) in the Arctic Ocean (AO) are largely governed by sea-ice and continental runoff rather than evaporation and precipitation as in lower latitude oceans, and global satellite analyses and models which incorporate remotely observed SST/S may be inaccurate in the AO due to lack of direct measurements for calibrating satellite data. For this reason, we are motivated to validate several satellite sea-surface temperature (SST) data products and SST/S models by comparing gridded data in the AO with oceanographic records from 2006 to 2013. Statistical analysis of product-minusobservation differences reveals that the satellite SST products considered have a temperature bias magnitude of less than 0.5°C compared to ship-based CTD measurements, and most of these biases are negative in sign. SST/S models also show an overall negative temperature bias, but no common sign or magnitude of salinity bias against CTD data. Ice tethered profiler (ITP) near-surface data span the seasons of several years, and these measurements reflect a sea-ice dominated region where the ocean surface cannot be remotely observed. Against this data, many of the considered models and products show large errors with detectable seasonal differences in SST bias. Possible sources of these errors are discussed, and two adjustments of product SST on the basis of sea-ice concentration are suggested for reducing bias to within less than 0.01°C of ITP near-surface temperatures.
机译:北冰洋(AO)的海表温度和盐度(SST / S)在很大程度上受海冰和大陆径流的控制,而不是像低纬度海洋中的蒸发和降水那样受控制,而全球卫星分析和模型则结合了遥测的SST由于缺少用于校准卫星数据的直接测量,在AO中/ S可能不准确。因此,我们有动机通过比较AO中的网格数据与2006年至2013年的海洋学记录来验证几种卫星海表温度(SST)数据产品和SST / S模型。对产品-负观测值差异的统计分析表明,与基于舰船的CTD测量相比,所考虑的卫星SST产品的温度偏差幅度小于0.5°C,并且大多数这些偏差的符号是负的。 SST / S模型还显示出总体负温度偏差,但对CTD数据没有常见的盐度偏差迹象或幅度。冰系绳廓线仪(ITP)的近地表数据跨越了数年的季节,这些测量结果反映了一个海冰为主的地区,在该地区无法远程观察到海洋表面。根据这些数据,许多考虑的模型和产品都显示出较大的误差,并且在SST偏差方面存在可检测的季节性差异。讨论了这些错误的可能根源,并建议根据海冰浓度对产品SST进行两次调整,以将偏差降低到ITP近地表温度的0.01°C以内。

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