Influence of the Quasi-Biennial Oscillation on the spatial structure of the wintertime Arctic Oscillation
ID:32 View Protection:ATTENDEE Updated Time:2022-07-01 20:52:25 Hits:1062 Oral Presentation

Start Time:2022-07-27 16:10(Asia/Shanghai)

Duration:15min

Session:S4 热带与中高纬气候系统相互作用 » S4-1议题4热带与中高纬气候系统相互作用27日下午

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Abstract
This study reveals that the Quasi-Biennial Oscillation (QBO) has a marked impact on the spatial structure of the Arctic Oscillation (AO) in boreal winter. In particular, the North Pacific center (NPC) of the AO is stronger during the westerly phase of the QBO (WQBO) than the easterly phase of the QBO (EQBO). In other words, the variability associated with the AO over the North Pacific is stronger in WQBO years than EQBO years even though the overall variability is insensitive to QBO phase. The QBO is suggested to influence the spatial pattern of the winter AO mainly via modulating the intensity of the stratospheric polar vortex, with a stronger stratospheric polar vortex during WQBO than EQBO years. A stronger stratospheric polar vortex can lead to more planetary wave refraction and facilitate the eastward propagation of wave activity flux from the mid-latitude North Pacific to the North Atlantic. Thus an enhanced connection between North Pacific and North Atlantic atmospheric variability is established, and a more prominent NPC of the AO occurs in WQBO years. In addition, the modulation of the AO structure by the QBO and the associated physical process is supported by output from the CNRM-CM6-1 model. Our results indicate that, for seasonal climate prediction in North America based on the AO, WQBO leads to a wider range of opportunity while EQBO suppresses the opportunity.
Keywords
Arctic Oscillation,Quasi-Biennial Oscillation,stratospheric polar vortex,planetary waves
Speaker
蔡晴宇
中国科学院大气物理研究所

Submission Author
蔡晴宇 中国科学院大气物理研究所
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Important Date
  • Conference Date

    Jul 27

    2022

    to

    Jul 28

    2022

  • Jun 30 2022

    Draft paper submission deadline

  • Jul 19 2022

    Registration deadline

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中国气象学会