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The flow pattern north of Taiwan and the migration of the Kuroshio

机译:台湾北部的流型与黑潮的迁徙

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The migration of the Kuroshio and mesoscale flow pattern north of Taiwan were studied using the historical ship-board acoustic Doppler current profiler (Sb-ADCP) current velocity and hydrographic measurements, moored current velocity, water temperature and salinity time series, snapshot current velocity observations and infrared images. The Kuroshio migrated both seasonally and intra-seasonally, with the former being more pronounced. The flow pattern north of Taiwan was significantly impacted by the seasonal migration of the Kuroshio. In summer the Kuroshio generally moved away from the shelf, colliding with the zonally running shelf breaks of the East China Sea (ECS) and splitting into an eastward mainstream and a northwestward branch current. Southwest of the branch current, a counterclockwise circulation was found along the edge of the shelf northeast of Taiwan, through which the subsurface Kuroshio water intruded forming a cold dome. In winter the Kuroshio moved close to and sometimes onto the northern shelf of Taiwan. The intrusion of the Kuroshio dominated the flow pattern in the region, causing the disappearance or obscuration of the counterclockwise circulation and cold dome. A sharp horizontal temperature front accompanying the horizontal velocity front was found on the northern shelf of Taiwan, through which the current flowed mainly northward against the winter monsoon. Intra-seasonal variations in flow patterns north of Taiwan and the intra-seasonal migration of the Kuroshio were also studied. In summer the counterclockwise circulation and cold dome migrated shoreward/seaward with the intraseasonal migration of the Kuroshio. In winter the Kuroshio either intruded onto the shelf just off the northern tip of Taiwan or slightly further north. The resulting flow patterns north of Taiwan varied with the path of the intruding Kuroshio. Though the impact of the Taiwan Strait outflow on the flow pattern north of Taiwan was not negligible, it was not as great as the impact of the Kuroshio. Conversely, the intrusion of the Kuroshio strongly influenced the Taiwan Strait outflow. In summer counterclockwise circulation blocked the Taiwan Strait outflow and directly interacted with the Kuroshio. In winter the outflow joined with the on-shelf Kuroshio north of Taiwan. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 13]
机译:使用历史船载声多普勒电流剖面仪(Sb-ADCP)流速和水文测量,系泊流速,水温和盐度时间序列,瞬时流速观测资料,研究了台湾北部黑潮和中尺度流型的迁移和红外图像。黑潮在季节和季节内都迁徙,前者更为明显。台湾北部的水流模式受到黑潮季节迁移的显着影响。夏季,黑潮大体上离开了陆架,与东海带状分布的陆架冲撞相撞,并分裂为东向主流和西北向分支流。在支流的西南方向,沿着台湾东北部大陆架的边缘发现了逆时针方向的循环,黑潮的地下水通过其侵入形成了一个冷圆顶。冬季,黑潮搬到台湾北部,有时甚至靠近台湾。黑潮的入侵支配了该地区的流型,导致逆时针循环和冷圆顶的消失或模糊。在台湾北部大陆架上发现了一个与水平速度前缘相伴的尖锐的水平温度前缘,洋流主要通过该北端逆着冬季风流动。还研究了台湾北部流型的季节内变化和黑潮的季节内迁移。夏季,随着黑潮的季节内迁移,逆时针的循环和冷圆顶向岸/海迁移。冬天,黑潮要么侵入台湾北端的架子上,要么就向北偏北。台湾北部产生的流型随入侵的黑潮的路径而变化。台湾海峡流出对台湾北部流向的影响虽然可以忽略不计,但没有黑潮的影响那么大。相反,黑潮的入侵严重影响了台湾海峡的外流。在夏季,逆时针的流通阻止了台湾海峡的流出,并直接与黑潮互动。冬季,流出的水与台湾北部的货架黑潮相连。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:13]

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