首页> 外文期刊>Geophysical Research Letters >SENSITIVITY OF SIMULATED SALINITY IN A THREE-DIMENSIONAL OCEAN MODEL TO UPPER OCEAN TRANSPORT OF SALT FROM SEA-ICE FORMATION
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SENSITIVITY OF SIMULATED SALINITY IN A THREE-DIMENSIONAL OCEAN MODEL TO UPPER OCEAN TRANSPORT OF SALT FROM SEA-ICE FORMATION

机译:三维海洋模型中模拟盐度对海冰形成层中盐分向上海洋传输的敏感性

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摘要

We show that explicit representation of sinking of salt rejected during sea-ice formation dramatically improves simulated salinity in an ocean general circulation model (OGCM). In our ''control'' simulation, rejected salt goes into the top model layer, and simulated salinities are typical of OGCMs: the deep ocean is too fresh, and the intermediate-depth salinity minimum associated with Antarctic Intermediate Water is absent. These problems are eliminated in our ''test'' simulation, in which we distribute rejected salt uniformly over the upper 160 m. Also, the strength of the Antarctic Circumpolar Current is more realistic in this simulation. These results show the need for, but do not provide, a better representation of sinking of rejected salt. The sensitivity of our model to sinking of rejected salt suggests that a similar sensitivity may exist in the real ocean, and that loss of Antarctic sea ice might have major effects. [References: 30]
机译:我们表明,在海冰形成过程中排除的盐分下沉的明确表示法大大改善了海洋总循环模型(OGCM)中的模拟盐度。在我们的“控制”模拟中,废盐进入了顶层模型层,模拟的盐度是OGCM的典型特征:深海太新鲜,缺少与南极中级水有关的中深度最低盐度。在我们的“测试”模拟中消除了这些问题,在模拟中,我们将废盐均匀地分布在上部160 m上。同样,在该模拟中,南极绕极电流的强度更加逼真。这些结果表明,有必要(但不能提供)更好地表示废盐下沉的情况。我们模型对不合格盐分下沉的敏感性表明,在真实的海洋中可能存在类似的敏感性,而南极海冰的损失可能会产生重大影响。 [参考:30]

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