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首页> 外文期刊>Journal of Physical Oceanography >Effect of Mesoscale Eddies on the Taiwan Strait Current
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Effect of Mesoscale Eddies on the Taiwan Strait Current

机译:中尺度涡对台湾海峡潮流的影响

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摘要

This study shows that mesoscale eddies can alter the Taiwan Strait Current. The 20-yr data-assimilated Japan Coastal Ocean Predictability Experiment 2 (JCOPE2) reanalysis data are analyzed, and the results are confirmed with idealized experiments. The leading wind-forced seasonal cycle is excluded to focus on the effect of the eddy. The warm eddy southwest of Taiwan is shown to generate a northward flow, whereas the cold eddy produces a southward current. The effect of the eddy penetrates onto the shelf through the joint effect of baroclinicity and relief (JEBAR). The cross-isobath fluxes lead to shelfward convergence and divergence, setting up the modulation of the sea level slope. The resulting along-strait current anomaly eventually affects a wide area of the Taiwan Strait. The stronger eddy leads to larger modification of the cross-shelf flows and sea level slope, producing a greater transport anomaly. The composite Sea-Viewing Wide Field-of-View Sensor chlorophyll-a (Chl-a) serves as an indicator to show the change in Chl-a concentration in the strait in response to the eddy-induced current. During the warm eddy period, the current carries the southern water of lower concentration northward, reducing Chl-a concentration in the strait. In contrast, Chl-a is enhanced because the cold eddy-induced southward current carries the northern water of higher concentration southward into the strait.
机译:这项研究表明,中尺度涡旋可以改变台湾海峡潮流。分析了20年的数据同化的日本沿海海洋可预测性实验2(JCOPE2)再分析数据,并通过理想化实验确认了结果。排除了主要的风力季节周期,以专注于涡流的影响。如图所示,台湾西南部的暖涡产生北向流动,而冷涡产生南向流动。涡流的作用是通过斜度和缓和作用(JEBAR)的共同作用渗透到架子上的。跨等温线通量导致向架子的收敛和发散,建立了海平面斜率的调制。由此产生的两岸电流异常最终影响台湾海峡的广大地区。较强的涡流导致跨架流量和海平面斜率的较大变化,从而产生较大的运输异常。复合海洋宽视场传感器叶绿素a(Chl-a)可作为指示剂,显示海峡中Chl-a浓度响应涡流感应电流而变化。在温暖的涡流期,洋流将较低浓度的南方水向北输送,使海峡中的Chl-a浓度降低。相比之下,Chl-a增强是因为冷涡流向南流动将较高浓度的北部水带入海峡。

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