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ENSO variability and the eastern tropical Pacific: A review

机译:ENSO变异性与东部热带太平洋:回顾

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摘要

El Nino-Southern Oscillation (ENSO) encompasses variability in both the eastern and western tropical Pacific. During the warm phase of ENSO, the eastern tropical Pacific is characterized by equatorial positive sea surface temperature (SST) and negative sea level pressure (SLP) anomalies, while the western tropical Pacific is marked by off-equatorial negative SST and positive SLP anomalies. Corresponding to this distribution are equatorial westerly wind anomalies in the central Pacific and equatorial easterly wind anomalies in the far western Pacific. Occurrence of ENSO has been explained as either a self-sustained, naturally oscillatory mode of the coupled ocean-atmosphere system or a stable mode triggered by stochastic forcing. Whatever the case, ENSO involves the positive ocean-atmosphere feedback hypothesized by Bjerknes. After an El Nino reaches its mature phase, negative feedbacks are required to terminate growth of the mature El Nino anomalies in the central and eastern Pacific. Four requisite negative feedbacks have been proposed: reflected Kelvin waves at the ocean western boundary, a discharge process due to Sverdrup transport, western Pacific wind-forced Kelvin waves, and anomalous zonal advections. These negative feedbacks may work together for terminating El Nino, with their relative importance being time-dependent. ENSO variability is most pronounced along the equator and the coast of Ecuador and Peru. However, the eastern tropical Pacific also includes a warm pool north of the equator where important variability occurs. Seasonally, ocean advection seems to play an important role for SST variations of the eastern Pacific warm pool. Interannual variability in the eastern Pacific warm pool may be largely due to a direct oceanic connection with the ENSO variability at the equator. Variations in temperature, stratification, insolation, and productivity associated with ENSO have implications for phytoplankton productivity and for fish, birds, and other organisms in the region. Long-term changes in ENSO variability may be occurring and are briefly discussed. This paper is part of a comprehensive review of the oceanography of the eastern tropical Pacific.
机译:El Nino-Southern Oscillation(ENSO)涵盖了东部和西部热带太平洋的变化。在ENSO的暖期期间,东部热带太平洋的特征是赤道正海表温度(SST)和负海平面压力(SLP)异常,而西部热带太平洋则以赤道外负SST和正SLP异常为特征。与这种分布相对应的是中太平洋的赤道西风异常和远西太平洋的赤道东风异常。 ENSO的发生被解释为海洋-大气耦合系统的自持,自然振荡模式或由随机强迫触发的稳定模式。无论如何,ENSO都包含Bjerknes假设的积极的海洋-大气反馈。在厄尔尼诺现象进入成熟阶段之后,需要负反馈来终止中太平洋和东太平洋成熟的厄尔尼诺现象的增长。已经提出了四个必要的负反馈:海洋西部边界处的反射开尔文波,由于Sverdrup输运引起的排放过程,西太平洋风力开尔文波以及异常的纬向平流。这些负面反馈可能会共同作用,以终止厄尔尼诺现象,其相对重要性取决于时间。在厄瓜多尔和秘鲁的赤道和沿海,ENSO的变化最为明显。但是,东部热带太平洋在赤道以北也有一个暖池,在这里发生重要的变化。在季节性上,海洋平流似乎对东太平洋暖池的海温变化有重要作用。东太平洋暖池的年际变化可能主要是由于与赤道的ENSO变化直接相关。与ENSO相关的温度,分层,日照度和生产力的变化对浮游植物的生产力以及该区域的鱼类,鸟类和其他生物都有影响。 ENSO变异性的长期变化可能会发生并进行简要讨论。本文是对东部热带太平洋海洋学的全面回顾的一部分。

著录项

  • 来源
    《Progress in Oceanography》 |2006年第4期|p.239-266|共28页
  • 作者

    Chunzai Wang; Paul C. Fiedler;

  • 作者单位

    NOAA Atlantic Oceanographic and Meteorological Laboratory, Physical Oceanography Division, 4301 Rickenbacker Causeway, Miami, FL 33149, USA;

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

  • 入库时间 2022-08-18 03:34:38

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