韦德尔海大陆坡暖深水涡流介导的输送参数化方向

IF 2.8 2区 地球科学 Q1 OCEANOGRAPHY
Nicolas Dettling, Martin Losch, Friederike Pollmann, T. Kanzow
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引用次数: 1

摘要

暖深水(WDW)向威德尔海大陆架的输送与热通量有关,对南极冰架的融化起着重要作用。由于高纬度地区的变形半径较小,因此很难在粗分辨率海洋模式中准确表示陆上威德尔海暖深水传输的涡流驱动部分,因此有必要进行参数化处理。Gent 和 McWilliams/Redi(GM/Redi)方案旨在对开阔海域的中尺度涡进行参数化。本文评估了 GM/Redi 方案能在多大程度上产生穿越威德尔海大陆坡的真实水华输送。为此,将漩涡参数化应用于粗分辨率的威德尔海大陆架和斜坡理想化模型,并根据高分辨率参考模拟对其性能进行评估。在应用 GM/Redi 参数化之后,粗分辨率模型模拟出的岸向威德尔海传输和热传输与高分辨率参考模型相吻合,水文平均场和等比线平均斜率都得到了改善。要成功应用 GM/Redi 参数化,就必须将大陆坡上的 GM 扩散率降低一个数量级,使其与公海值相比,以考虑地形坡度的漩涡压制效应。当地形对全球机制扩散率的影响被忽略时,参数化的粗模型要么低估了海岸热通量,要么高估了海岸热通量。这些结果促使人们在区域和全球海洋模式中采用坡度感知涡参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards parameterizing eddy-mediated transport of Warm Deep Water across the Weddell Sea continental slope
The transport of Warm Deep Water (WDW) onto the Weddell Sea continental shelf is associated with a heat flux and strongly contributes to the melting of Antarctic ice shelves. The small radius of deformation at high latitudes makes it difficult to accurately represent the eddy-driven component of onshore WDW transport in coarse-resolution ocean models so that a parameterization becomes necessary. The Gent and McWilliams/Redi (GM/Redi) scheme was designed to parameterize mesoscale eddies in the open ocean. Here, it is assessed to what extent the GM/Redi scheme can generate a realistic transport of WDW across the Weddell Sea continental slope. To this end, the eddy parameterization is applied to a coarse-resolution idealized model of the Weddell Sea continental shelf and slope, and its performance is evaluated against a high-resolution reference simulation. With the GM/Redi parameterization applied, the coarse model simulates a shoreward WDW transport with a heat transport that matches the high-resolution reference and both the hydrographic mean fields and the mean slopes of the isopycnals are improved. A successful application of the GM/Redi parameterization is only possible by reducing the GM diffusivity over the continental slope by an order of magnitude compared to the open ocean value to account for the eddy-suppressing effect of the topographic slope. When the influence of topography on the GM diffusivity is neglected, the coarse model with the parameterization either under or overestimates the shoreward heat flux. These results motivate the incorporation of slope-aware eddy parameterizations into regional and global ocean models.
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来源期刊
CiteScore
2.40
自引率
20.00%
发文量
200
审稿时长
4.5 months
期刊介绍: The Journal of Physical Oceanography (JPO) (ISSN: 0022-3670; eISSN: 1520-0485) publishes research related to the physics of the ocean and to processes operating at its boundaries. Observational, theoretical, and modeling studies are all welcome, especially those that focus on elucidating specific physical processes. Papers that investigate interactions with other components of the Earth system (e.g., ocean–atmosphere, physical–biological, and physical–chemical interactions) as well as studies of other fluid systems (e.g., lakes and laboratory tanks) are also invited, as long as their focus is on understanding the ocean or its role in the Earth system.
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