Daily‐scale planetary wave patterns and the modulation of cold season weather in the northern extratropics
ID:431 View Protection:ATTENDEE Updated Time:2021-06-10 21:45:49 Hits:1657 Poster Presentation

Start Time:2021-07-10 08:50(Asia/Shanghai)

Duration:5min

Session:SP 张贴报告专场 » SP-11主题11、大气科学 墙报

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Abstract
Tropospheric planetary waves, often linked to asymmetries in lower boundary forcing, significantly modulate atmospheric blocking and storm track structures that are, in turn, linked to extreme surface weather events. Day‐to‐day variability in the planetary scale circulation, taken as wave numbers 1 to 5 in the daily 500 hPa geopotential heights, and the associated impact on storm tracks and regional weather are studied for the period 1950–2005. Six boreal cold‐season distinct planetary wave patterns are identified via hierarchical cluster analysis. The first, second, and sixth patterns feature a prominent zonal wave number 1 structure, while the fourth and fifth patterns resemble the negative and positive phases of northern annular mode, respectively. The second pattern represents an amplification of the climatological mean wave structure, while the third pattern resembles the zonal wave number 3 pattern. A multitaper spectral analysis of the daily projection indices indicates that the planetary wave patterns are primarily intraseasonal in nature. The first (sixth) pattern combines the positive (negative) phase of the Pacific‐North American teleconnection pattern and negative (positive) phase of the North Atlantic Oscillation, inducing poleward (equatorward) shifts in the Pacific storm track and a weakened (strengthened) Atlantic storm track. In contrast, the fourth (fifth) pattern results in a simultaneous equatorward (poleward) displacement of both storm tracks. Extreme cold waves over the continental United States (U.S.) are favored during occurrences of the fourth and sixth patterns. During episodes of the first pattern, increased rainfall prevails over much of the U.S., while precipitation anomalies induced by the other patterns are more regional in nature.
 
Keywords
planetary wave,storm track,extreme cold waves,harmonic analysis,northern annual mode
Speaker
谢作威
副研究员 中国科学院大气物理研究所

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

    Jul 09

    2021

    to

    Jul 11

    2021

  • May 30 2021

    Abstract Submission Deadline

  • May 30 2021

    Draft paper submission deadline

  • May 30 2021

    Early Bird Registration

  • Jul 10 2021

    Registration deadline

  • Jul 11 2021

    Contribution Submission Deadline

Sponsored By
青年地学论坛理事会
Organized By
中国科学院地球化学研究所
贵州大学
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