969 / 2026-03-26 22:01:08
Distinguishing the Drivers of Strong versus Weak Cold Air Outbreaks: A Lagrangian Energy Budget Perspective
Cold air outbreak; HYSPLIT; Dry static energy; Diabatic heating; Longwave radiation
Abstract Accepted
冯晓莹 / 中国地质大学(武汉)
刘博 / 成都信息工程大学
Abstract

Cold air outbreaks (CAOs) have substantial impacts on public health, energy demand and transportation. Here we identify strong and weak CAO days during boreal winters over 1979-2022 across three major Northern Hemisphere sectors. Strong and weak CAOs occur on average about 11 and 23 days per winter. The 10-day backward trajectories show that air parcels associated with strong CAOs maintain lower potential temperature throughout their evolution, indicating that the strong-weak contrast is established early and persists along the pathway. The trajectories exhibit a common two-stage evolution, with cooling during an intensification stage followed by warming during an outbreak stage as parcels approach the target regions. Decomposition of the peak-intensity contrast, defined as the strong-minus-weak difference in minimum potential temperature, indicates that more than 60% is inherited from differences in the initial thermodynamic state, consistent with more poleward source regions for strong events, while the remainder reflects pathway modification. A Lagrangian dry static energy budget further shows that longwave radiative cooling dominates intensification-stage cooling and is partly offset by turbulent exchange. Strong-weak differences are governed primarily by contrasts in longwave radiation and turbulence. These results provide process-based guidance for improving CAO prediction and risk assessment.
Important Date
  • Conference Date

    Apr 25

    2026

    to

    Apr 29

    2026

  • Apr 07 2026

    Draft paper submission deadline

  • Jun 17 2026

    Registration deadline

Sponsored By
未来大气科学论坛理事会
Organized By
河海大学海洋学院
南京大学南京赫尔辛基大气与地球系统科学学院
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