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On the Physics of the Warm Water Volume and El Nino/La Nina Predictability

机译:关于温水量的物理和厄尔尼诺/拉尼娜的可预测性

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摘要

Previous work has shown that warm water volume (WWV), usually defined as the volume of equatorial Pacific warm water above the 20 degrees C isotherm between 5 degrees S and 5 degrees N, leads El Nino. In contrast to previous discharge-recharge oscillator theory, here it is shown that anomalous zonal flow acceleration right at the equator and the movement of the equatorial warm pool are crucial to understanding WWV-El Nino dynamics and the ability of WWV to predict ENSO. Specifically, after westerly equatorial wind anomalies in a coupled ocean-atmosphere instability push the warm pool eastward during El Nino, the westerly anomalies follow the warmest water south of the equator in the Southern Hemisphere summer in December-February. With the wind forcing that causes El Nino in the eastern Pacific removed, the eastern equatorial Pacific sea level and thermocline anomalies decrease. Through long Rossby wave dynamics this decrease results in an anomalous westward equatorial flow that tends to push the warm pool westward and often results in the generation of a La Nina during March-June. The anomalously negative eastern equatorial Pacific sea level typically does not change as much during La Nina, the negative feedback is not as strong, and El Ninos tend to not follow La Ninas the next year. This El Nino/La Nina asymmetry is seen in the WWV/El Nino phase diagram and decreased predictability during "La Nina-like" decades.
机译:先前的工作表明,通常将暖水量(WWV)定义为赤道太平洋暖水量高于20°C等温线(介于5°S和5°N之间)会导致厄尔尼诺现象。与以前的充放电振荡器理论相反,这里表明,赤道处异常的纬向流加速度和赤道暖池的运动对于理解WWV-El Nino动力学和WWV预测ENSO的能力至关重要。具体而言,在厄尔尼诺现象期间,由于海洋和大气不稳定的西风赤道异常将暖池推向东,西风异常跟随南半球夏季赤道以南的最暖水(12月至2月)。随着导致东太平洋厄尔尼诺现象的强风被消除,赤道东太平洋海平面和热跃层异常减少。通过长期的Rossby波动力学,这种减少导致赤道西流异常向西推进,倾向于将暖池向西推,并经常导致3月至6月产生La Nina。赤道东太平洋海平面异常负值通常在拉尼娜期间变化不大,负反馈也没有那么强烈,而厄尔尼诺人则倾向于在明年不跟随拉尼娜。在WWV / El Nino相图中可以看到这种El Nino / La Nina不对称性,并且在“类似La Nina的”几十年期间降低了可预测性。

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  • 来源
    《Journal of Physical Oceanography》 |2019年第6期|1541-1560|共20页
  • 作者

    Clarke Allan J.; Zhang Xiaolin;

  • 作者单位

    Florida State Univ, Earth Ocean & Atmospher Sci, Tallahassee, FL 32306 USA;

    Florida State Univ, Earth Ocean & Atmospher Sci, Tallahassee, FL 32306 USA;

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  • 正文语种 eng
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