Mesoscale eddy modulation of winter convective mixing in the northern Arabian Sea

IF 2.3 3区 地球科学 Q2 OCEANOGRAPHY Deep-sea Research Part Ii-topical Studies in Oceanography Pub Date : 2024-06-13 DOI:10.1016/j.dsr2.2024.105397
Prasad G. Thoppil
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Abstract

The formation of Arabian Sea High Salinity Water (ASHSW) during the winter monsoon in the northern Arabian Sea is driven by surface buoyancy loss, which increases surface density and triggers convective mixing. The depth of convective mixing is influenced by the interplay between surface cooling (buoyancy loss) and upper-ocean stratification. Mesoscale eddies present during winter can alter this stratification and modulate convective mixing. We investigated the impact of these eddies on convective mixing and ASHSW formation utilizing a combination of observations, data assimilative model results, and 1-D and 3-D model experiments. Our analyses consistently demonstrate that the depth of winter convective mixing is influenced by the stratification imposed by mesoscale features, resulting in distinct mixing characteristics. When subjected to identical buoyancy forcing, convective mixing associated with cyclonic eddies occurs at shallower depths compared to anticyclonic eddies. This difference is particularly pronounced during the peak period of convective mixing (January–February), exceeding 50 m, compared to the early stages (November–December). The combined effect of cyclonic and anticyclonic eddies generates spatially inhomogeneous convective mixing, which cannot be solely explained by buoyancy flux. These conclusions are supported by Argo observations and analyses of 1-D and 3-D model experiments. Overall, our study highlights the significant role of mesoscale eddies in modulating convective mixing and ASHSW formation in the northern Arabian Sea.

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阿拉伯海北部冬季对流混合的中尺度涡动调制
阿拉伯海北部冬季季风期间阿拉伯海高盐度水(ASHSW)的形成是由表层浮力损失驱动的,浮力损失会增加表层密度并引发对流混合。对流混合的深度受到表层冷却(浮力损失)和上层海洋分层之间相互作用的影响。冬季出现的中尺度漩涡可改变这种分层并调节对流混合。我们综合利用观测资料、数据同化模式结果以及一维和三维模式实验,研究了这些漩涡对对流混合和 ASHSW 形成的影响。我们的分析一致表明,冬季对流混合的深度受到中尺度特征所造成的分层的影响,从而产生了不同的混合特征。当受到相同的浮力作用时,与反气旋涡旋相比,与气旋涡旋相关的对流混合发生在较浅的深度。这种差异在对流混合的高峰期(1 月至 2 月)尤为明显,与早期阶段(11 月至 12 月)相比,对流混合深度超过 50 米。气旋性涡旋和反气旋性涡旋的共同作用产生了空间上不均匀的对流混合,这不能完全用浮力通量来解释。这些结论得到了 Argo 观测数据以及一维和三维模型实验分析的支持。总之,我们的研究强调了中尺度涡在调节阿拉伯海北部对流混合和 ASHSW 形成中的重要作用。
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来源期刊
CiteScore
6.40
自引率
16.70%
发文量
115
审稿时长
3 months
期刊介绍: Deep-Sea Research Part II: Topical Studies in Oceanography publishes topical issues from the many international and interdisciplinary projects which are undertaken in oceanography. Besides these special issues from projects, the journal publishes collections of papers presented at conferences. The special issues regularly have electronic annexes of non-text material (numerical data, images, images, video, etc.) which are published with the special issues in ScienceDirect. Deep-Sea Research Part II was split off as a separate journal devoted to topical issues in 1993. Its companion journal Deep-Sea Research Part I: Oceanographic Research Papers, publishes the regular research papers in this area.
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