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Fire-Generated Tornadic Vortices.

Authors :
Lareau, Neil P.
Nauslar, Nicholas J.
Bentley, Evan
Roberts, Matthew
Emmerson, Samuel
Brong, Brian
Mehle, Matthew
Wallman, James
Source :
Bulletin of the American Meteorological Society; May2022, Vol. 103 Issue 5, pE1296-E1320, 25p
Publication Year :
2022

Abstract

Fire-generated tornadic vortices (FGTVs) linked to deep pyroconvection, including pyrocumulonimbi (pyroCbs), are a potentially deadly, yet poorly understood, wildfire hazard. In this study we use radar and satellite observations to examine three FGTV cases during high-impact wildfires during the 2020 fire season in California. We establish that these FGTVs each exhibit tornado-strength anticyclonic rotation, with rotational velocity as strong as 30 m s−1 (60 kt), vortex depths of up to 4.9 km AGL, and pyroCb plume tops as high as 16 km MSL. These data suggest similarities to EF2+ strength tornadoes. Volumetric renderings of vortex and plume morphology reveal two types of vortices: embedded vortices anchored to the fire and residing within high-reflectivity convective columns and shedding vortices that detach from the fire and move downstream. Time-averaged radar data further show that each case exhibits fire-generated mesoscale flow perturbations characterized by flow splitting around the fire's updraft and pronounced flow reversal in the updraft's lee. All the FGTVs occur during deep pyroconvection, including pyroCb, suggesting an important role of both fire and cloud processes. The commonalities in plume and vortex morphology provide the basis for a conceptual model describing when, where, and why these FGTVs form. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00030007
Volume :
103
Issue :
5
Database :
Complementary Index
Journal :
Bulletin of the American Meteorological Society
Publication Type :
Academic Journal
Accession number :
157612878
Full Text :
https://doi.org/10.1175/BAMS-D-21-0199.1