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首页> 外文期刊>Journal of oceanography >Seasonal and Interannual Variations in the East Sakhalin Current Revealed by TOPEX/POSEIDON Altimeter Data
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Seasonal and Interannual Variations in the East Sakhalin Current Revealed by TOPEX/POSEIDON Altimeter Data

机译:TOPEX / POSEIDON高度计数据揭示了东萨哈林海流的季节性和年际变化

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摘要

Seasonal and interannual variations in the East Sakhalin Current (ESC) are investigated using ten-year records of the sea level anomaly (SLA) observed by the TOPEX/ POSEIDON (T/P) altimeter. The T/P SLA clearly documents seasonal and interannual variations in the ESC along the east coast of Sakhalin Island, although sea ice masks the region from January to April. Estimates of surface current velocity anomaly derived from T/P SLA are in good agreement with drifting buoy observations. The ESC is strong in winter, with a typical current velocity of 30-40 cm s~(-1) in December, and almost disappears in summer. Southward flow of the ESC is confined to the shelf and slope region and consists of two velocity cores. These features of the ESC are consistent with short-term observations reported in previous studies. Analysis of the ten-year records of T/P SLA confirms that the structure of the ESC is maintained each winter and the seasonal cycle is repeated every year, although the strength of the ESC shows large interannual variations. Seasonal and interannual variations in the ESC are discussed in relation to wind-driven circulation in the Sea of Okhotsk, using wind stress and wind stress curl fields derived from European Centre for Medium Range Weather Forecasts (ECMWF) reanalysis data and a scatterometer-derived wind product. Seasonal and interannual variations of the anticyclonic eddy in the Kuril Basin are also revealed using T/P SLA.
机译:使用TOPEX / POSEIDON(T / P)高度计观测到的十年海平面异常(SLA)记录,研究了东萨哈林海流(ESC)的季节性和年际变化。 T / P SLA清楚地记录了萨哈林岛东海岸沿岸ESC的季节和年际变化,尽管从1月到4月海冰掩盖了该地区。由T / P SLA推算出的表面电流速度异常的估计值与浮标的观测值非常吻合。 ESC在冬季较强,12月的典型流速为30-40 cm s〜(-1),夏季几乎消失。 ESC的南流仅限于陆架和斜坡区域,由两个速度核心组成。 ESC的这些特征与先前研究中报道的短期观察结果一致。对T / P SLA十年记录的分析证实,尽管ESC的强度显示出较大的年际变化,但每个冬季都保持ESC的结构,并每年重复季节性周期。利用欧洲中程天气预报中心(ECMWF)重新分析数据和散射仪推导出的风应力和风应力卷曲场,讨论了鄂霍次克海中与风驱动环流有关的ESC的季节性和年际变化。产品。使用T / P SLA还揭示了千岛盆地反气旋涡的季节性和年际变化。

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