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July 5, 2019Science Advances172 citationsOpen Access

Diversity of the Madden-Julian Oscillation

BWBin WangGCGuosen ChenFLFei Liu

Key Points

  • This research aims to better understand the diversity of the Madden-Julian Oscillation (MJO) and its implications for climate prediction.
  • Cluster analysis of observed MJO propagation patterns to delineate different types
  • Identification of four archetypes: standing, jumping, slow eastward, fast eastward
  • Analysis of atmospheric circulation and thermodynamic structures associated with each archetype
  • Four distinct MJO archetypes identified, each with unique circulation and thermodynamic characteristics.
  • Kelvin wave response tightly coupled with major convection for propagating events.
  • Sea surface temperature anomalies shown to modify MJO diversity through impacts on Kelvin wave response.

Abstract

Madden-Julian Oscillation (MJO) is the dominant mode of atmospheric intraseasonal variability and the cornerstone for subseasonal prediction of extreme weather events. Climate modeling and prediction of MJO remain a big challenge, partially due to lack of understanding the MJO diversity. Here, we delineate observed MJO diversity by cluster analysis of propagation patterns of MJO events, which reveals four archetypes: standing, jumping, slow eastward propagation, and fast eastward propagation. Each type exhibits distinctive east-west asymmetric circulation and thermodynamic structures. Tight coupling between the Kelvin wave response and major convection is unique for the propagating events, while the strength and length of Kelvin wave response distinguish slow and fast propagations. The Pacific sea surface temperature anomalies can affect MJO diversity by modifying the Kelvin wave response and its coupling to MJO convection. The results shed light on the mechanisms responsible for MJO diversity and provide potential precursors for foreseeing MJO propagation.

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Cite This Study

Wang et al. (2019) studied this question.

synapsesocial.com/papers/69d7638bf07a12db70b8acd7https://doi.org/10.1126/sciadv.aax0220
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