The Multiple-Vortex Structure of the El Reno, Oklahoma, Tornado on 31 May 2013

Author:

Bluestein Howard B.1,Thiem Kyle J.2,Snyder Jeffrey C.3,Houser Jana B.4

Affiliation:

1. School of Meteorology, University of Oklahoma, Norman, Oklahoma

2. National Weather Service, Peachtree City, Georgia

3. NOAA/OAR/National Severe Storms Laboratory, Norman, Oklahoma

4. Department of Geography, Ohio University, Athens, Ohio

Abstract

Abstract This study documents the formation and evolution of secondary vortices associated within a large, violent tornado in Oklahoma based on data from a close-range, mobile, polarimetric, rapid-scan, X-band Doppler radar. Secondary vortices were tracked relative to the parent circulation using data collected every 2 s. It was found that most long-lived vortices (those that could be tracked for ≥15 s) formed within the radius of maximum wind (RMW), mainly in the left-rear quadrant (with respect to parent tornado motion), passing around the center of the parent tornado and dissipating closer to the center in the right-forward and left-forward quadrants. Some secondary vortices persisted for at least 1 min. When a Burgers–Rott vortex is fit to the Doppler radar data, and the vortex is assumed to be axisymmetric, the secondary vortices propagated slowly against the mean azimuthal flow; if the vortex is not assumed to be axisymmetric as a result of a strong rear-flank gust front on one side of it, then the secondary vortices moved along approximately with the wind.

Funder

National Science Foundation

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference83 articles.

1. Alexander, C. R. , 2010: A mobile radar based climatology of supercell tornado structures and dynamics. Ph. D. thesis, School of Meteorology, University of Oklahoma, 229 pp.

2. The 30 May 1998 Spencer, South Dakota, storm. Part I: The structural evolution and environment of the tornadoes;Alexander;Mon. Wea. Rev.,2005

3. An assessment of low-level baroclinity and vorticity within a simulated supercell;Beck;Mon. Wea. Rev.,2013

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