西部边界涡度异常驱动的向东扩展射流:特征和南向背景流的影响

IF 1.3 4区 地球科学 Q4 OCEANOGRAPHY Journal of Oceanography Pub Date : 2024-07-23 DOI:10.1007/s10872-024-00726-8
Haruka Onishi, Atsushi Kubokawa
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引用次数: 0

摘要

在采用无滑动边界条件的数值模式中,喷流最初与海岸分离,并在地层间边界以南向东流动。这种过早分离是由西部边界摩擦产生的正涡度和从南部平流而来的潜在涡度守恒产生的负涡度造成的。在本研究中,我们提出了一个新模型,其中包括西部边界区域的涡对强迫,涡度结构会导致西部边界流(WBC)喷流的分离和延伸。我们的模型可以分别处理由大尺度风驱动的局部流动和由涡对驱动的西边界流扩展射流。我们证实,我们的模型可以成功地复制由风驱动的两层准地转模型中过早脱离西部边界的扩展射流。在我们的涡对强迫模型中,射流的主要物理结构在上游和下游区域有所不同。在上游区域,强制力导致的涡对侵入是主要因素,而在下游区域,涡的影响开始显现。我们还研究了大尺度风驱动背景流对射流的影响。当背景流只包含东向成分时,射流向东延伸。当背景流包含经向成分时,会对延伸的射流产生强烈影响,并可能终止向东的射流结构。
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Eastward extension jet driven by vorticity anomaly at the western boundary: characteristics and the effects of southward background flow

In numerical models that adopt a no-slip boundary condition, a jet initially separates from the shore and flows eastward south of the inter-gyre boundary. This premature separation is caused by positive vorticity created by friction on the western boundary, which is paired with negative vorticity created by the conservation of the potential vorticity advected from the south. In this study, we propose a new model that includes vortex pair forcing in the western boundary region, where a vorticity structure causes separation and extension of the western boundary current (WBC) jet. Our model can separately treat flow that is locally driven by large-scale wind and the WBC extension jet driven by a vortex pair. We confirmed that our model could successfully replicate an extension jet prematurely separated from the western boundary for a wind-driven, two-layer quasi-geostrophic model. The dominant physical structure of the jet in our vortex pair forcing model differed in the upstream and downstream regions. In the upstream region, the intrusion of vortex pairs due to forcing is the dominant factor, while in the downstream region, the effect of eddies begins to manifest. We also examined the effects of a large-scale wind-driven background flow on the jet. When the background flow only contains an eastward component, the jet extends eastward. When the background flow contains a meridional component, this strongly affects the extended jet and can terminate the eastward jet structure.

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来源期刊
Journal of Oceanography
Journal of Oceanography 地学-海洋学
CiteScore
3.50
自引率
13.00%
发文量
42
审稿时长
6-12 weeks
期刊介绍: The Journal of Oceanography is the official journal of the Oceanographic Society of Japan and open to all oceanographers in the world. The main aim of the journal is to promote understandings of ocean systems from various aspects including physical, chemical, biological, geological oceanography as well as paleoceanography, etc. The journal welcomes research focusing on the western North Pacific and Asian coastal waters, but the study region is not limited to the Asian Pacific. The journal publishes original articles, short contributions, reviews, and correspondence in oceanography and related fields.
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