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首页> 外文期刊>Journal of Physical Oceanography >Transient Diapycnal Mixing and the Meridional Overturning Circulation
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Transient Diapycnal Mixing and the Meridional Overturning Circulation

机译:瞬态斜向混合和子午翻转循环

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摘要

An idealized three-dimensional model of buoyancy-forced flow in a single hemisphere is used to investigate whether transient diapycnal mixing can sustain the meridional overturning circulation. In the annual mean, mixing transience had little effect on the meridional overturning. When mixing occurred on basin boundaries, the overturning strength was found to be insensitive to mixing transience. For mixing that was highly localized in space away from basin boundaries, oceanic meridional mass and heat transport decreased as mixing became more transient. The increased sensitivity in the highly localized case is likely due to the inhibition of surface heat flux into the thermocline. The dynamic response to transient mixing featured large-scale, internal oscillations that increased in amplitude with the transience of mixing but were confined to the Tropics and had little effect on the overturning cell through midlatitudes. These results indicate that transient diapycnal mixing, with a distribution suggestive of tropical cyclones, can effectively drive a meridional overturning.
机译:一个理想的三维浮力流动模型在一个半球用于研究瞬态横摆混合是否可以维持子午翻转循环。以年平均值计,混合瞬变对子午翻转的影响很小。当在盆地边界发生混合时,倾覆强度对混合瞬变不敏感。对于高度集中在远离盆地边界的空间中的混合来说,随着混合变得更加短暂,海洋子午质量和热传递降低了。在高度局部化的情况下,灵敏度的提高可能是由于抑制了进入热跃线的表面热通量。对瞬态混合的动力响应具有大规模的内部振荡,其振幅随混合的瞬变而增加,但仅限于热带地区,对中纬度的倾覆单元几乎没有影响。这些结果表明,瞬态二叠纪混合,暗示热带气旋的分布,可以有效地驱动子午翻转。

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