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首页> 外文期刊>Journal of Physical Oceanography >Large-Scale Dynamics of Circulations with Open-Ocean Convection
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Large-Scale Dynamics of Circulations with Open-Ocean Convection

机译:大洋对流的大规模环流动力学

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摘要

Formation of the densest water masses in the North Atlantic and its marginal seas involves open-ocean convection. The main goal of this study is to contribute to the general understanding of how such convective regions connect to the large-scale ocean circulation. Specifically, analytic and numerical versions of a variable density layer model are used to explore the processes underlying the circulation in an idealized ocean basin. The models are forced by a surface buoyancy flux, which generates a density maximum in the ocean interior. In response to the forcing, a region forms that is characterized by the closed Rossby wave characteristics and where the eddy-mean transport converges toward the convective site. Outside of that region, characteristics extend from the eastern boundary and a distorted -plume circulation develops, linking the convection site with the western boundary. The overturning strength in the model can be related to several environment variables and forcings and is constrained by the surface density field, stratification, eddy mixing strength and by Rossby wave dynamics. Solutions forced by an interior ocean density minimum are also considered. Although no convection occurs, the dynamics underlying the circulation are closely related to the case with cooling.
机译:北大西洋及其边缘海中最密集的水团的形成涉及海洋对流。这项研究的主要目的是促进人们对这种对流区域如何与大规模海洋环流联系起来的一般理解。具体而言,使用可变密度层模型的解析和数值版本来探索理想化海盆中环流的过程。这些模型受表面浮力的作用,这会在海洋内部产生最大密度。响应于强迫,形成了区域,该区域的特征在于闭合的罗斯比波特征,并且涡流均值向汇流点汇聚。在该区域之外,特征从东部边界延伸,并且形成了扭曲的水流,将对流站点与西部边界连接起来。模型中的倾覆强度可能与几个环境变量和强迫有关,并受到表面密度场,分层,涡流混合强度和Rossby波动力学的限制。还考虑了由内部海洋最小密度引起的解决方案。尽管没有对流发生,但循环背后的动力学与冷却情况密切相关。

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