Impacts of Vertical Convective Mixing Schemes and Freshwater Forcing on the 2016–2017 Maud Rise Polynya Openings in a Regional Ocean Simulation

IF 4.4 2区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of Advances in Modeling Earth Systems Pub Date : 2024-05-16 DOI:10.1029/2023MS004106
Birte Gülk, Fabien Roquet, Alberto C. Naveira Garabato, Romain Bourdallé-Badie, Gurvan Madec, Hervé Giordani
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Abstract

The correct representation of the Maud Rise open-ocean polynya in the Weddell Sea remains a challenge for ocean models. Here we reproduce the most recent polynya openings in 2016–2017 using a regional configuration, and assess their dependencies on vertical convective mixing schemes and freshwater forcing, both separately and in combination. We test three vertical convective mixing schemes: the enhanced vertical diffusion (EVD), the Eddy-Diffusivity Mass-Flux (EDMF) parameterization, and a modified version of EDMF accounting for thermobaric effects. Using simulations for the period 2007–2017, we find that the modified EDMF reproduces the observed climatological evolution of the mixed layer depth better than the original EDMF and the EVD, but a polynya fails to open due to excessive freshwater forcing. We thus use the modified EDMF to perform sensitivity experiments with reduced precipitation during 2012–2017. The imposed freshwater forcing strongly affects the number of years with polynyas. The simulation with the best representation of the 2016–2017 polynyas is analyzed to evaluate the triggering mechanisms. The 2016 polynya was induced by the action of thermobaric instabilities on a weak ambient stratification. This opening preconditioned the water column for 2017, which produced a stronger polynya. By examining the impacts of the different convective mixing schemes, we show that the modified EDMF generates more realistic patterns of deep convection. Our results highlight the importance of surface freshwater forcing and thermobaricity in governing deep convection around Maud Rise, and the need to represent thermobaric instabilities to realistically model Maud Rise polynyas.

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区域海洋模拟中的垂直对流混合模式和淡水强迫对 2016-2017 年毛德海隆带开口的影响
如何正确表示威德尔海莫德隆起公海多谷仍然是海洋模式面临的挑战。在此,我们使用区域配置重现了 2016-2017 年最近的多谷开口,并评估了它们对垂直对流混合方案和淡水强迫的依赖性,包括单独和组合的依赖性。我们测试了三种垂直对流混合方案:增强垂直扩散(EVD)、涡度-扩散质量-流量(EDMF)参数化,以及考虑热气流效应的修正版 EDMF。通过对 2007-2017 年期间的模拟,我们发现修正版 EDMF 比原始 EDMF 和 EVD 更好地再现了观测到的混合层深度的气候演变,但由于过多的淡水胁迫,一个多谷未能打开。因此,我们使用修改后的 EDMF 进行了 2012-2017 年降水减少的敏感性实验。施加的淡水胁迫对出现多雨带的年数有很大影响。我们分析了最能代表 2016-2017 年多雨带的模拟结果,以评估触发机制。2016 年的多云天气是由热压不稳定性对弱环境分层的作用诱发的。这一开口为 2017 年的水柱提供了先决条件,从而产生了更强的多云天气。通过研究不同对流混合方案的影响,我们发现修改后的 EDMF 生成的深层对流模式更加逼真。我们的研究结果凸显了表层淡水强迫和热气压在控制莫德隆起周围深层对流中的重要性,以及表示热气压不稳定性以真实模拟莫德隆起多旋流的必要性。
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来源期刊
Journal of Advances in Modeling Earth Systems
Journal of Advances in Modeling Earth Systems METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
11.40
自引率
11.80%
发文量
241
审稿时长
>12 weeks
期刊介绍: The Journal of Advances in Modeling Earth Systems (JAMES) is committed to advancing the science of Earth systems modeling by offering high-quality scientific research through online availability and open access licensing. JAMES invites authors and readers from the international Earth systems modeling community. Open access. Articles are available free of charge for everyone with Internet access to view and download. Formal peer review. Supplemental material, such as code samples, images, and visualizations, is published at no additional charge. No additional charge for color figures. Modest page charges to cover production costs. Articles published in high-quality full text PDF, HTML, and XML. Internal and external reference linking, DOI registration, and forward linking via CrossRef.
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