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首页> 外文期刊>Journal of oceanography >Mesoscale Eddies Observed by TOLEX-ADCP and TOPEX/POSEIDON Altimeter in the Kuroshio Recirculation Region South of Japan
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Mesoscale Eddies Observed by TOLEX-ADCP and TOPEX/POSEIDON Altimeter in the Kuroshio Recirculation Region South of Japan

机译:日本南部黑潮再循环地区的TOLEX-ADCP和TOPEX / POSEIDON高度计观测到的中尺度涡流

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摘要

Mesoscale eddies in the Kuroshio recirculation region south of Japan have been investigated by using surface current data measured by an Acoustic Doppler Current Profiler (ADCP) installed on a regular ferry shuttling between Tokyo and Chichijima, Bonin Islands, and sea surface height anomaly derived from the TOPEX/POSEIDON altimeter. Many cyclonic and anticyclonic eddies were observed in the region. Spatial and temporal scales of the eddies were determined by lag-correlation analyses in space and time. The eddies are circular in shape with a diameter of 500 km and a temporal scale of 80 days. Typical maximum surface velocity and sea surface height anomaly associated with the eddies are 15–20 cm s?1 and 15 cm, respectively. The frequency of occurrence, temporal and spatial scales, and intensity are all nearly the same for the cyclonic and anticyclonic eddies, which are considered to be successive wave-like disturbances rather than solitary eddies. Phase speed of westward propagation of the eddies is estimated as 6.8 cm s?1, which is faster than a theoretical estimate based on the baroclinic first-mode Rossby wave with or without a mean current. The spatial distribution of sea surface height variations suggests that these eddies may be generated in the Kuroshio Extension region and propagate westward in the Kuroshio recirculation region, though further studies are needed to clarify the generation processes.
机译:日本南部黑潮回流地区的中尺度涡流已经通过使用地面声波数据进行了调查,该数据是由安装在东京和波恩群岛的千岛之间的常规渡轮上的声学多普勒电流剖面仪(ADCP)测得的,并且该海面高度异常源自TOPEX / POSEIDON高度计。在该地区观察到许多旋风和反旋风涡。涡旋的时空尺度是通过时空相关分析确定的。涡流呈圆形,直径为500 km,时间尺度为80天。与涡流有关的典型最大表面速度和海面高度异常分别为15–20 cm s?1和15 cm。旋风和反旋风涡的出现频率,时空尺度和强度几乎相同,它们被认为是连续的波状扰动,而不是孤立的涡。涡流向西传播的相速度估计为6.8 cm s?1,这比基于有或没有平均电流的斜压第一模式Rossby波的理论估计要快。海面高度变化的空间分布表明,这些涡流可能在黑潮延伸区产生,并在黑潮回流区向西传播,尽管需要进一步研究来阐明其产生过程。

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