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Oceanic mesoscale eddies enhance the Pacific Decadal Oscillation and its predictability

  • Bolan Gan
  • , Xin Wang
  • , Lixin Wu
  • , Wenju Cai
  • , Shujun Li
  • , Hong Wang
  • , Bowen Liu
  • , Jingjie Yu
  • , Hong Yan
  • , Tao Han
  • , Fan Jia
  • Ocean University of China
  • Laoshan Laboratory
  • Xiamen University
  • CAS - Institute of Earth Environment

科研成果: 期刊稿件文章同行评审

摘要

The Pacific Decadal Oscillation (PDO) profoundly influences marine ecosystems, fisheries, and global hydroclimate. Although traditionally interpreted as basin-scale oceanic responses to atmospheric stochastic forcing, whether its dynamics involve active ocean feedbacks remains unresolved. Using an unprecedented multicentury eddy-resolving global climate simulation, we find that mesoscale eddy-driven atmospheric anomalies in the Kuroshio Extension (KE) region are critical to PDO evolution. During the PDO cold phase, the northward-shifted meandering KE generates mesoscale sea surface temperature (SST) anomalies that intensify lateral diabatic heating gradient, driving deep updrafts that cool the mid-troposphere and weaken its northern baroclinicity. This suppresses transient eddy momentum flux and facilitates a basin-scale low-pressure anomaly, initiating transition to the warm phase. Concurrently, mesoscale eddy-induced vertical heat transport sustains SST anomalies, providing additional PDO memory. These coupled processes substantially enhance the PDO’s predictability. Our findings highlight the previously underappreciated upscale effects of oceanic eddies, offering important insight into decadal climate variability.

源语言英语
期刊论文编号eadz8486
期刊Science Advances
12
22
DOI
出版状态已出版 - 5月 2026
已对外发布

联合国可持续发展目标

此成果有助于实现下列可持续发展目标:

  1. 可持续发展目标 13 - 气候行动
    可持续发展目标 13 气候行动
  2. 可持续发展目标 14 - 水下生物
    可持续发展目标 14 水下生物

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