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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Subsurface connections in the eastern tropical Pacific during La Nina 1999–2001 and El Nino 2002–2003
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Subsurface connections in the eastern tropical Pacific during La Nina 1999–2001 and El Nino 2002–2003

机译:拉尼娜1999-2001年和厄尔尼诺2002-2003年期间热带东部太平洋的地下连接

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摘要

The subsurface connections between the Equatorial Current System (ECS) and the Peru Current System (PCS) between 1999 and 2005 are investigated with a primitive‐equation, eddy‐resolving regional model that is forced with realistic atmospheric and lateral oceanic conditions. Specific attention is given to the 1999–2000 La Nina and the 2002–2003 El Nino. The model’s skill is assessed through a comparison with satellite‐derived sea level anomalies and in situ sea surface temperature time series. The model reproduces fairly well the known dynamics of the region for climatological conditions, and the numerical solution obtained for the particular 1999–2000 and 2002–2003 events presents patterns rather typical of cold and warm phases of El Nino‐Southern Oscillation (ENSO). Eulerian and Lagrangian diagnoses are used to derive relevant information about the density and velocity vertical structures of the ECS and the PCS. The transports of the major currents in the region are shown to differ a lot between the 1999–2000 La Nina and the 2002–2003 El Nino. The equatorial subsurface currents transfer significantly more water into the eastern tropical Pacific during La Nina than during El Nino, whereas the Peru‐Chile Undercurrent (PCUC) carries more water during El Nino. The equatorial subsurface currents, and especially the primary Southern Subsurface Countercurrent, contribute to 80% of the PCUC transport during the 1999–2000 cold phase. This ratio falls down to only 20% during the 2002–2003 warm phase.
机译:利用原始方程,涡旋分辨区域模型对1999年至2005年之间的赤道洋流系统(ECS)和秘鲁洋流系统(PCS)之间的地下连接进行了研究,该模型在现实的大气和横向海洋条件下被迫采用。特别关注了1999–2000年的拉尼娜(La Nina)和2002–2003年的厄尔尼诺(El Nino)。通过与源自卫星的海平面异常和原位海表温度时间序列进行比较,评估了该模型的技能。该模型很好地再现了该地区气候条件的已知动态,并且针对特定1999-2000年和2002-2003年事件获得的数值解决方案呈现出厄尔尼诺-南方涛动(ENSO)的寒冷和温暖阶段的典型模式。欧拉和拉格朗日诊断用于得出有关ECS和PCS的密度和速度垂直结构的相关信息。在1999-2000年拉尼娜和2002-2003年厄尔尼诺现象之间,该地区的主要水流的输送量显示出很大差异。在拉尼娜期间,赤道地下水流向热带东部太平洋输送的水量比在厄尔尼诺期间要多得多,而秘鲁智利地下暗流(PCUC)在厄尔尼诺期间则输送更多的水。赤道地下电流,特别是南部南部地下逆流,在1999-2000年寒冷时期贡献了80%的PCUC运移。在2002-2003年温暖期,这一比例下降到只有20%。

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