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contributor authorHouston, Adam L.
date accessioned2018-01-03T11:02:30Z
date available2018-01-03T11:02:30Z
date copyright7/21/2017 12:00:00 AM
date issued2017
identifier otherjas-d-16-0227.1.pdf
identifier urihttp://138.201.223.254:8080/yetl1/handle/yetl/4246452
description abstractAbstractA physical mechanism based on density current dynamics is proposed to explain the generation of low-level vertical vorticity in supercells. This mechanism may serve as one explanation for the associative relationship between environmental low-level vertical shear and the occurrence of significant tornadoes. The mechanism proposed herein represents an indirect connection to the generation of strong surface-based rotation: the barotropic horizontal vorticity associated with the vertical shear acts to amplify existing rotation but does not directly contribute to surface rotation. The proposed mechanism couples the likelihood of a tornado to the vertical shear through the pattern of vertical motion induced through interaction of a deformed gust front and the environmental vertical shear.Results from the experiments conducted to test the veracity of the proposed mechanism illustrate that inferred patterns of tilting and vortex line orientation are consistent with the generation of positive vertical vorticity near the axis of the existing mesocyclone and negative vertical vorticity along the rear-flank gust front. Moreover, inferred tilting is found to scale with the magnitude of the environmental vertical shear, consistent with the climatologies that motivate this work. Experiments also reveal that the proposed mechanism is capable of relating boundary deformation, mesocyclone strength, and hodograph shape to the ultimate likelihood of tornadogenesis.
publisherAmerican Meteorological Society
titleThe Possible Role of Density Current Dynamics in the Generation of Low-Level Vertical Vorticity in Supercells
typeJournal Paper
journal volume74
journal issue10
journal titleJournal of the Atmospheric Sciences
identifier doi10.1175/JAS-D-16-0227.1
journal fristpage3191
journal lastpage3208
treeJournal of the Atmospheric Sciences:;2017:;Volume( 074 ):;issue: 010
contenttypeFulltext


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