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首页> 外文期刊>Journal of Climate >Modulation of the Meridional Structures of the Indo-Pacific Warm Pool on the Response of the Hadley Circulation to Tropical SST
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Modulation of the Meridional Structures of the Indo-Pacific Warm Pool on the Response of the Hadley Circulation to Tropical SST

机译:对荷兰循环响应对热带SST的响应的调制

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摘要

By decomposing the variations of the Hadley circulation (HC) and tropical zonal-mean sea surface temperature (SST) into the equatorially asymmetric (HEA for HC, SEA for SST) and symmetric (HES for HC, SES for SST) components, the varying response of the HC to different SST meridional structures under warm and cold conditions of the Indo-Pacific warm pool (IPWP) is investigated over the period 1979-2016. The response of the HC to SST evidences an asymmetric variation between warm and cold IPWP conditions; that is, the response ratio of HEA to SEA relative to that of HES to SES is similar to 5 under warm conditions and similar to 2 under cold conditions. This asymmetry is primarily due to a decrease in the HEA-to-SEA ratio under cold IPWP conditions, and is driven by changes in the meridional distribution of SST anomalies. Equatorial asymmetric (symmetric) SST anomalies are dominated by warm (cold) IPWP conditions. Thus, variations of SEA are suppressed under cold IPWP conditions, contributing to the observed weakening of the HEA-to-SEA ratio. The results presented here indicate that the HC is more sensitive to the underlying SST when the IPWP is warmer, during which the variation of SEA is enhanced, suggesting a recent strengthening of the response of the HC to SST, as the IPWP has warmed over the past several decades, and highlighting the importance of the IPWP meridional structures rather than the overall warming of the HC.
机译:通过将Hadley循环(HC)和热带间距平均海面温度(SST)分解成赤行不对称(HC的HC,SST HC,SST)和对称(SSSSSS的HC,SES的HC,SES)组件的差异,变化在1979 - 2016年期间,研究了HC对印度 - 太平洋温水池(IPWP)的温暖和寒冷条件下的不同SST子午线结构的响应。 HC对SST的响应可以证明温暖和冷的IPWP条件之间的不对称变化;也就是说,Hea待海洋相对于SES的响应比在温暖条件下类似于5,并且在寒冷条件下类似于2。这种不对称主要是由于冷IPWP条件下的大海比例下降,并且由SST异常的子午线分布的变化驱动。赤道不对称(对称)SST异常由温暖(冷)IPWP条件主导。因此,在冷的IPWP条件下抑制了大海的变化,有助于观察到的大海比例的弱化。此处提出的结果表明,当IPWP是较温暖的时,HC对底层SST更敏感,在此期间海的变化增强,旨在提高HC对SST的响应,因为IPWP已经过度了越过几十年,突出了IPWP赞美结构的重要性而不是HC的整体变暖。

著录项

  • 来源
    《Journal of Climate》 |2018年第21期|共14页
  • 作者单位

    Beijing Normal Univ Coll Global Change &

    Earth Syst Sci Beijing Peoples R China;

    Beijing Normal Univ Coll Global Change &

    Earth Syst Sci Beijing Peoples R China;

    Abdus Salam Int Ctr Theoret Phys Earth Syst Phys Sect Trieste Italy;

    Beijing Normal Univ Coll Global Change &

    Earth Syst Sci Beijing Peoples R China;

    Beijing Normal Univ Coll Global Change &

    Earth Syst Sci Beijing Peoples R China;

    Beijing Normal Univ Coll Global Change &

    Earth Syst Sci Beijing Peoples R China;

    Beijing Normal Univ Coll Global Change &

    Earth Syst Sci Beijing Peoples R China;

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

    Atmosphere-ocean interaction; Hadley circulation; Climate variability;

    机译:大气 - 海洋互动;哈德利循环;气候变异性;

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