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Asymmetric evolution of El Nino and La Nina: the recharge/discharge processes and role of the off-equatorial sea surface height anomaly

机译:厄尔尼诺现象和拉尼娜现象的不对称演变:充/放电过程和赤道海面高度异常的作用

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摘要

Observed oceanic and atmospheric anomalies in the tropical Pacific are analyzed to understand the symmetric and asymmetric characteristics between El Nino and La Nina evolutions. It is noted that the evolutions are largely symmetric for El Nino and La Nina prior to and in their mature phase, but become asymmetric afterwards. It is further demonstrated that this asymmetry is due to the fact that, on average, the discharge process associated with El Nino is stronger than the recharge counterpart associated with La Nina. The symmetric and asymmetric evolution for different phases of El Nino-Southern Oscillation (ENSO) is consistent with the associated recharge and discharge processes that are linked with the evolution of anomalous ocean surface current and gradient of sea surface height anomalies (SSHAs). It is suggested that the evolution of the meridional gradient of SSHAs in the central and eastern equatorial Pacific is different between El Nino and La Nina years due to relatively different rates of the SSHA changes on and off the equator. During the decay of a warm event, the equatorial SSHA quickly switches from positive to negative, meanwhile the off-equator areas are occupied by positive SSHAs. Such changes on the equator and in the off-equatorial regions make the concavity of the meridional SSHA favorable for growth and persistence of westward surface zonal current anomaly in the equatorial Pacific, then for the ENSO phase transition. During the decay of a cold event, the slow decrease of the negative SSHA on the equator combined with the disappearance of the negative SSHA in the off-equatorial regions makes the meridional concavity reverse easily and is unfavorable for the steady growth of the eastward surface zonal current anomaly and for the phase transition. Thus, the asymmetric evolution of ENSO is associated with both the atmosphere and ocean anomalies on the equator and off the equator.
机译:分析热带太平洋观测到的海洋和大气异常,以了解厄尔尼诺和拉尼娜演变之间的对称和非对称特征。值得注意的是,El Nino和La Nina的演化在成熟阶段之前和处于成熟阶段都是对称的,但之后却变得不对称。进一步证明,这种不对称性是由于以下事实造成的:平均而言,与厄尔尼诺现象有关的放电过程比与拉尼娜现象有关的充电过程更强。厄尔尼诺-南方涛动(ENSO)不同阶段的对称和不对称演化与相关的充放电过程相一致,这些过程与异常海面电流的演变和海面高度异常(SSHA)的梯度有关。由于厄尔尼诺和拉尼娜年份的变化,赤道中部和东部赤道太平洋SSHA子午线梯度的变化是不同的,这是由于赤道内外赤道上空SSHA的变化率相对不同。在温暖事件的衰减过程中,赤道SSHA迅速从正变为负,同时赤道外区域被正SSHA占据。赤道和赤道外区域的这种变化使子午线SSHA的凹面有利于赤道太平洋西表面纬向流异常的增长和持续存在,然后有利于ENSO相变。在寒冷事件的衰减过程中,赤道上负SSHA的缓慢下降加上赤道外区域负SSHA的消失,使得子午凹容易逆转,不利于东表带的稳定增长。当前异常并用于相变。因此,ENSO的非对称演化与赤道内和赤道外的大气和海洋异常有关。

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  • 来源
    《Climate dynamics》 |2017年第8期|2737-2748|共12页
  • 作者单位

    NOAA, Climate Predict Ctr, NCEP, NWS, 5830 Univ Res Court, College Pk, MD 20740 USA;

    NOAA, Climate Predict Ctr, NCEP, NWS, 5830 Univ Res Court, College Pk, MD 20740 USA;

    George Mason Univ, Ctr Ocean Land Atmosphere Studies, Dept Atmospher Ocean & Earth Sci, Fairfax, VA 22030 USA;

    NOAA, Climate Predict Ctr, NCEP, NWS, 5830 Univ Res Court, College Pk, MD 20740 USA|Univ Maryland, Earth Syst Sci Interdisciplinary Ctr, College Pk, MD 20740 USA;

    Chinese Acad Sci, Inst Oceanol, Key Lab Ocean Circulat & Waves, Qingdao, Peoples R China;

    Univ Hawaii, Dept Meteorol, 2525 Correa Rd,HIG 350, Honolulu, HI 96822 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ENSO; Asymmetric evolution; Recharge and discharge processes; Meridional gradient of SSH;

    机译:ENSO;不对称演化;充放电过程;SSH的子午梯度;

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