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Iron sources and pathways into the Pacific Equatorial Undercurrent

机译:铁源和进入太平洋赤道暗流的途径

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摘要

Using a novel observationally constrained Lagrangian iron model forced by outputs from an eddy-resolving biogeochemical ocean model, we examine the sensitivity of the Equatorial Undercurrent (EUC) iron distribution to EUC source region iron concentrations. We find that elevated iron concentrations derived from New Guinea Coastal Undercurrent (NGCU) alone is insufficient to explain the high concentrations observed in the EUC. In addition, due to the spread in transit times, interannual NGCU iron pulses are scavenged, diluted, or eroded, before reaching the eastern equatorial Pacific. With an additional iron source from the nearby New Ireland Coastal Undercurrent, EUC iron concentrations become consistent with observations. Furthermore, as both the New Guinea and New Ireland Coastal Undercurrents strengthen during El Nino, increased iron input into the EUC can enhance the iron supply into the eastern equatorial Pacific. Notably, during the 1997/1998 El Nino, this causes a simulated 30% iron increase at a 13 month lag.
机译:使用一种新的观测约束拉格朗日铁模型,该模型受涡旋分解生物地球化学海洋模型的输出强迫,我们研究了赤道​​暗流(EUC)铁分布对EUC源区铁浓度的敏感性。我们发现仅来自新几内亚沿海暗流(NGCU)的铁浓度升高不足以解释EUC中观察到的高浓度。另外,由于传播时间的延长,每年两次的NGCU铁脉冲在到达赤道东太平洋之前被清除,稀释或腐蚀。通过附近新爱尔兰沿海暗流的额外铁源,EUC的铁浓度变得与观测值一致。此外,随着厄尔尼诺现象期间新几内亚和新爱尔兰沿海暗流的加剧,增加对EUC的铁输入可以增加对赤道东太平洋的铁供应。值得注意的是,在1997/1998年的厄尔尼诺现象期间,这导致模拟的铁含量增加了30%,滞后13个月。

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