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Variability of chlorophyll-a concentration and sea surface wind in the South China Sea associated with the El Nino-Southern Oscillation

机译:叶绿素 - 南海浓度和海面风与EL Nino-Southern振荡相关的变异性

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In this paper, the seasonal and interannual variability of the chlorophyll-a concentration (Chl-a) and sea surface wind (SSW) fields in the South China Sea (SCS) are analyzed using Orbview-2/SeaWiFS, and ERS-1/2 and QuikSCAT satellite data. The mode 1 results of the empirical orthogonal function (EOF) analysis for Chl-a indicate the higher Chl-a is mainly along the coastal areas in the SCS, while the EOF mode 2 results show a summer-winter oscillation of the Chl-a distribution in the SCS. Through the comparison between EOF mode 2 results of the Chl-a anomaly and Nino 3.4 index, it is found that the Chl-a variation in the SCS is highly related to the El Nino-Southern Oscillation (ENSO) events. The SSW EOF mode 1 results indicate that the northeasterly monsoon in winter is much stronger than the southwesterly monsoon in summer. The SSW EOF mode 2 results show the zonal line near 15o N can be a boundary to separate the wind pattern into two parts in fall, the northeasterly wind is in its north and southwesterly wind in its south. The EOF results of the SSW anomaly show the weaker monsoon occurring during the 1997/1998 El Nino winter. Comparing Chl-a EOF mode 2 and SSW EOF mode 1 results, we can find that Chl-a in the SCS is mainly influenced by the monsoon wind, wind-induced coastal upwelling makes the Chl-a increasing along the western SCS in summer but along the eastern SCS in winter.
机译:本文使用Orbview-2 / Seawifs分析了南海(SCS)中叶绿素-A浓度(CHL-A)和海表面风(SSW)田地的季节性和续际变异性,以及ERS-1 / 2和Quikscat卫星数据。 CHL-A的经验正交函数(EOF)分析的模式1结果表明较高的CHL-A主要沿SCS中的沿海地区,而EOF模式2结果显示了CHL-A的夏季冬季振荡分布在SCS中。通过EOF模式的比较2的CHL-A异常和NINO 3.4指数的结果,发现SCS的CHL-A变化与EL Nino-Southern振荡(ENSO)事件具有高度相关。 SSW EOF模式1结果表明,冬季冬季东北部季风比夏季的西南季风更强大。 SSW EOF模式2结果显示,近150℃附近的区域线可以是将风图案分为秋季两部分的边界,东北风在其南部和西南风中。 SSW异常的EF结果显示了1997/1998 El Nino冬季发生的较弱的季风。比较CHL-A EOF模式2和SSW EOF模式1结果,我们可以发现SCS中的CHL-A主要受到季风风的影响,风引起的沿海上升性使CHL-A沿着西部SCS在夏季增加而越来越大沿着东部SCS在冬天。

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