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    On the Physics of the Warm Water Volume and El Niño/La Niña Predictability

    Source: Journal of Physical Oceanography:;2019:;volume 049:;issue 006::page 1541
    Author:
    Clarke, Allan J.
    ,
    Zhang, Xiaolin
    DOI: 10.1175/JPO-D-18-0144.1
    Publisher: American Meteorological Society
    Abstract: AbstractPrevious work has shown that warm water volume (WWV), usually defined as the volume of equatorial Pacific warm water above the 20°C isotherm between 5°S and 5°N, leads El Niño. 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 Niño 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 Niño, 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 Niño 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 Niña during March?June. The anomalously negative eastern equatorial Pacific sea level typically does not change as much during La Niña, the negative feedback is not as strong, and El Niños tend to not follow La Niñas the next year. This El Niño/La Niña asymmetry is seen in the WWV/El Niño phase diagram and decreased predictability during ?La Niña?like? decades.
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      On the Physics of the Warm Water Volume and El Niño/La Niña Predictability

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    contributor authorClarke, Allan J.
    contributor authorZhang, Xiaolin
    date accessioned2019-10-05T06:47:37Z
    date available2019-10-05T06:47:37Z
    date copyright4/10/2019 12:00:00 AM
    date issued2019
    identifier otherJPO-D-18-0144.1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4263434
    description abstractAbstractPrevious work has shown that warm water volume (WWV), usually defined as the volume of equatorial Pacific warm water above the 20°C isotherm between 5°S and 5°N, leads El Niño. 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 Niño 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 Niño, 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 Niño 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 Niña during March?June. The anomalously negative eastern equatorial Pacific sea level typically does not change as much during La Niña, the negative feedback is not as strong, and El Niños tend to not follow La Niñas the next year. This El Niño/La Niña asymmetry is seen in the WWV/El Niño phase diagram and decreased predictability during ?La Niña?like? decades.
    publisherAmerican Meteorological Society
    titleOn the Physics of the Warm Water Volume and El Niño/La Niña Predictability
    typeJournal Paper
    journal volume49
    journal issue6
    journal titleJournal of Physical Oceanography
    identifier doi10.1175/JPO-D-18-0144.1
    journal fristpage1541
    journal lastpage1560
    treeJournal of Physical Oceanography:;2019:;volume 049:;issue 006
    contenttypeFulltext
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