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首页> 外文期刊>Geophysical Research Letters >The impact of Labrador Sea temperature and salinity variability on density and the subpolar AMOC in a decadal prediction system
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The impact of Labrador Sea temperature and salinity variability on density and the subpolar AMOC in a decadal prediction system

机译:年代际预测系统​​中拉布拉多海水温度和盐度变异性对密度和亚极AMOC的影响

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摘要

Labrador Sea density variability is important for Atlantic Meridional Overturning Circulation (AMOC) dynamics and hence decadal variability in the Atlantic. We investigate whether temperature or salinity dominate top 500m interannual Labrador Sea density variability in gridded observations, an assimilation of the observations, and a set of multiannual hindcasts. We find that salinity dominates in the observations and assimilation. In the hindcasts salinity remains dominant for the first year but from year three these revert to the same temperature dominance seen in the underlying climate model. This is due to damping of the interannual salinity variability, possibly caused by unrealistically large convection that develops. Crucially, the hindcasts have high correlation skill in temperature/salinity throughout, but no skill in density, dynamic sea level, or the subpolar AMOC due to the incorrect drivers. This highlights the importance of correctly simulating both the sign and magnitude of temperature/salinity variability in a prediction system.
机译:拉布拉多海域密度变化对大西洋子午翻转环流(AMOC)动力学至关重要,因此对大西洋的年代际变化也很重要。我们调查温度或盐度是否主导了网格观测,同化观测以及一组多年后兆中拉布拉多海域前500m年度密度的变化。我们发现盐度在观测和同化作用中占主导地位。在后cast中,盐度在第一年仍然占主导地位,但是从第三年开始,盐度又恢复到基本气候模型中相同的温度优势。这是由于年际盐度变化的衰减所致,这可能是由于产生的不切实际的大对流所致。至关重要的是,后代在整个温度/盐度方面具有较高的相关技能,但由于驱动程序不正确,因此在密度,动态海平面或亚极AMOC方面没有相关技能。这突出了正确模拟预测系统中温度/盐度变异性的符号和大小的重要性。

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