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Role of Resolved and Parameterized Eddies in the Labrador Sea Balance of Heat and Buoyancy

机译:解析和参数化涡流在拉布拉多海热与浮力平衡中的作用

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摘要

Deep convection in the Labrador Sea is an important component of the global ocean ventilation. The associated loss of heat to the atmosphere from the interior of the sea is thought to be mostly supplied by me-soscale eddies, generated either remotely or as a result of convection itself-processes that are not resolved by low-resolution ocean climate models. The authors first employ a high-resolution (1/12°) ocean model forced with high-resolution (33 km, 3 h) atmospheric fields to further elaborate on the role of mesoscale eddies in maintaining the balance of heat and buoyancy in the Labrador Sea. In general agreement with previous studies, it is found that eddies remove heat along the coast and supply it to the interior. Some of the eddies that are generated because of the barotropic instability off the west coast of Greenland are recaptured by the boundary current. In the region of deep convection, the convergence of heat and buoyancy by eddies significantly increases with the deepening of the winter mixed layer. In addition, the vertical eddy flux plays an important part in the heat budget of the upper Labrador Sea, accounting for up to half of the heat loss to the atmosphere north of 60°N. A low-resolution (1°) model with parameterized eddies is then applied to show that it does capture, qualitatively, the general structure of eddy buoyancy advection along the Labrador Current. However, the 1° model is deficient in this regard in the most eddy active region off the west coast of Greenland, although some improvements can be made by forcing it with the high-resolution atmospheric fields.
机译:拉布拉多海的深对流是全球海洋通风的重要组成部分。从海洋内部到大气的相关热量损失被认为主要是由中尺度涡旋提供的,这些涡旋既可以是远距离产生的,也可以是由于对流本身的过程而产生的,而低分辨率海洋气候模型无法解决。作者首先采用高分辨率(1/12°)海洋模型,并在高分辨率(33 km,3 h)大气场的作用下,进一步阐述了中尺度涡旋在维持拉布拉多热量与浮力平衡中的作用。海。与先前的研究大体一致,发现涡流沿着海岸带走热量并将其提供给内部。格陵兰岛西海岸由于正压不稳定而产生的一些涡流被边界流所捕获。在深对流区域,随着冬季混合层的加深,涡流的热量和浮力的收敛显着增加。此外,垂直涡流在拉布拉多海上游的热量收支中起重要作用,占60°N以北大气中热量损失的一半。然后应用具有参数化涡流的低分辨率(1°)模型来显示它确实从质量上捕获了沿拉布拉多洋流的涡流对流的一般结构。但是,在格陵兰岛西海岸外最涡动的活动区域中,尽管在强高分辨率大气场的作用下可以进行一些改进,但1°模型在这方面还是不足的。

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  • 来源
    《Journal of Physical Oceanography》 |2014年第12期|3008-3032|共25页
  • 作者单位

    Canadian Centre for Climate Modelling and Analysis, Environment Canada, 3800 Finnerty Rd., Victoria BC V8P 5C2, Canada;

    Canadian Meteorological Centre, Environment Canada, Dorval, Quebec, Canada;

    Canadian Centre for Climate Modelling and Analysis, Environment Canada, Victoria, British Columbia, Canada;

    Department of Earth and Atmospheric Sciences, University of Alberta, Edmonton, Alberta, Canada;

    Bedford Institute of Oceanography, Fisheries and Oceans Canada, Dartmouth, Nova Scotia, Canada;

    Meteorological Research Division, Environment Canada, Dorval, Quebec, Canada;

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