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Seasonal Variability of the Large-Scale Currents near the Coast of the Philippines

机译:菲律宾海岸附近海流的季节性变化

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摘要

The mean seasonal cycle of the western boundary currents in the tropical North Pacific Ocean is studied diagnostically by combining atmospheric climatologies with drifter, satellite altimetry, and hydrographic data in the framework of a simplified numerical model incorporating geostrophy, hydrostatics, continuity, and tracer conservation. The approach enables the authors to diagnose the absolute 3D velocity field and to assess the seasonal cycle of sea surface height (SSH)/total transports. Errors are estimated by considering multiple datasets and averaging over the results of the corresponding diagnostic computations. Analysis shows that bifurcation of the North Equatorial Current (NEC) occurs at 14.3° +- 0.7°N near the Philippine coast. Meridional migration of the NEC bifurcation latitude is accompanied by quantitative changes in the partitioning of the NEC transport between the Kuroshio and Mindanao Current. In February-July, when the NEC transport is 58 +- 3 Sv (Sv ≡ 10~6 m~3 s~(-1)) the Kuroshio transport is 12%-15% higher than the Mindanao Current (MC) transport. In the second half of the annual cycle the situation is reversed: in October the NEC transport drops to 51 +- 2 Sv with the MC transport exceeding the Kuroshio transport by 25%. The net westward transport through the Luzon Strait is characterized by a minimum of 1.2 +- 1.1 Sv in July-September and a maximum of 4.8 +- 0.8 Sv in January-February. A statistically significant correlation is established between the monthly SSH/streamfunction anomalies north of 10°N and the Ekman pumping rate associated with the northeast monsoon developing in the region in October-December. The result provides an indication of the fact that local monsoon is likely to be an important mechanism governing seasonal variation of the NEC partitioning and water mass distribution between the tropical and subtropical North Pacific.
机译:通过将大气气候与漂流,卫星测高和水文数据结合起来,在简化的数值模型框架内,结合地球动力学,静水力,连续性和示踪剂养护,以诊断方式研究了北太平洋热带西部洋流的平均季节性周期。该方法使作者能够诊断绝对3D速度场并评估海面高度(SSH)/总运输量的季节性周期。通过考虑多个数据集并平均相应诊断计算的结果来估计错误。分析表明,北赤道流(NEC)的分叉发生在菲律宾海岸附近的14.3°±0.7°N处。 NEC分叉纬度的子午迁移伴随着黑潮和棉兰老洋流之间NEC输运分配的定量变化。在2月至7月,当NEC传输速度为58±3 Sv(Sv≡10〜6 m〜3 s〜(-1))时,黑潮传输速度比棉兰老流(MC)传输速度高12%-15%。在年度周期的后半段,情况发生了逆转:10月份NEC的运输量下降至51±2 Sv,MC的运输量比黑潮的运输量高25%。穿过吕宋海峡的净西移特征是在7月至9月最低为1.2±1.1 Sv,在1月至2月最高为4.8±0.8 Sv。在10°N以北的每月SSH /流函数异常与该地区10月至12月发生的东北季风相关的Ekman抽水率之间建立了统计学上的显着相关性。该结果表明以下事实:本地季风可能是控制NEC分区的季节变化和热带与亚热带北太平洋之间水量分布的重要机制。

著录项

  • 来源
    《Journal of Physical Oceanography》 |2004年第4期|p.844-855|共12页
  • 作者

    MAX YAREMCHUK; TANGDONG QU;

  • 作者单位

    International Pacific Research Center, School of Ocean and Earth Science and Technology, University of Hawaii at Manoa, 2525 Correa Road, Honolulu, HI 96822;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋学;
  • 关键词

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