Supercell low-level mesocyclones in simulations with a sheared convective boundary layer

Simulations of supercell thunderstorms in a sheared convective boundary layer (CBL), characterized by quasi-two-dimensional rolls, are compared with simulations having horizontally homogeneous environments. The effects of boundary layer convection on the general characteristics and the low-level mesocyclones of the simulated supercells are investigated for rolls oriented either perpendicular or parallel to storm motion, as well as with and without the effects of cloud shading. Bulk measures of storm strength are not greatly affected by the presence of rolls in the near-storm environment. Though boundary layer convection diminishes with time under the anvil shadow of the supercells when cloud shading is allowed, simulations without cloud shading suggest that rolls affect the morphology and evolution of supercell low-level mesocyclones. Initially, CBL vertical vorticity perturbations are enhanced along the supercell outflow boundary, resulting in nonnegligible near-ground vertical vorticity regardless of roll orientation. At later times, supercells that move perpendicular to the axes of rolls in their environment have low-level mesocyclones with weaker, less persistent circulation compared to those in a similar horizontally homogeneous environment. For storms moving parallel to rolls, the opposite result is found: that is, low-level mesocyclone circulation is often enhanced relative to that in the corresponding horizontally homogeneous environment

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Author Nowotarski, Christopher
Markowski, Paul
Richardson, Yvette
Bryan, George
Publisher UCAR/NCAR - Library
Publication Date 2015-01-01T00:00:00
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Topic Category geoscientificInformation
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Metadata Date 2023-08-18T18:58:10.866725
Metadata Record Identifier edu.ucar.opensky::articles:16475
Metadata Language eng; USA
Suggested Citation Nowotarski, Christopher, Markowski, Paul, Richardson, Yvette, Bryan, George. (2015). Supercell low-level mesocyclones in simulations with a sheared convective boundary layer. UCAR/NCAR - Library. http://n2t.net/ark:/85065/d7tt4s4p. Accessed 22 June 2025.

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