Dynamics Governing a T-initiation Mesoscale Convective System
ID:50 View Protection:ATTENDEE Updated Time:2026-07-31 21:43:54 Hits:0 Poster Presentation

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Abstract
Bow echoes, identifiable by their bow-like shape on radar, are often associated with specific convective processes. The T-initiation Mesoscale Convective System (MCS) exemplifies this phenomenon, appearing as a quasi-linear bow echo with downstream nascent leading convection (LC), forming a 'T' shape on radar. The LC presents challenges for operational forecasts and can lead to severe weather conditions when they merge with parent bow echoes. Focusing on a T-initiation MCS over the Bohai Sea in China, this study investigates the physical mechanisms governing LC initiation. Utilizing the WRF-ARW model, backward trajectory tracking within a Lagrangian framework and vertical momentum budget analysis are employed to explore the dynamic factors driving the uplift of air parcels within the LC cells. Results reveal that a mid-level mesoscale anticyclonic vortex associated with the bow echo’s upper-level outflow modulated the wind field, resulting in stronger vertical wind shear between 2.5–5 km AGL downstream of the bow-echo. Interactions between this enhanced shear and pre-existing vertical motion led to low perturbation pressures at midlevels, which resulted in a nonhydrostatic vertical perturbation pressure gradient force that aided parcel ascent, contributing to the initiation of new LC cells. Thus, this study helps elucidate the self-organizing and sustaining processes of bow echoes by potentially identifying a novel initiation mechanism for LC cells in a T-initiation MCS.
Keywords
Convective Initiation,T-initiation Mesoscale Convective System
Speaker
张树时
副研究员 南京气象科技创新研究院

Submission Author
张树时 南京气象科技创新研究院
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Important Date
  • Conference Date

    Aug 12

    2026

    to

    Aug 15

    2026

  • Aug 05 2026

    Draft paper submission deadline

  • Aug 12 2026

    Registration deadline

Sponsored By
成都信息工程大学
Organized By
成都信息工程大学
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