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Potential vorticity indexUsing standard data analysis techniques, researchers explore the links between disturbance growth and quasi-geostrophic potential vorticity (PV) gradients; appearance and disappearance of cutoff lows and blocking highs and their relation to a zonal index (properly defined in terms of PV); and teleconnections between different flow patterns and their relation to the zonal index. It was found that the PV index and the eddy index correlate better than a zonal index (defined by zonal wind) and the eddy index. In the frequency domain there are three frequencies (.03, .07 and .17 cpd (cycle per day) corresponding to periods of 33, 14 and 6 days) at which PV index and the eddy index exhibit local maxima. The high correlation found at periods of 33 days is mainly due to eddy activity at high latitudes while the local correlation maxima found at the shorter periods are mainly due mid-latitude eddy activity. The correlation between the PV index and the geopotential height anomaly at 500 mb, at each grid point in the Northern Hemisphere, shows the existence of most of the teleconnection patterns summarized by Wallace and Gutzler (1981): the North Atlantic Oscillation, the North Pacific Oscillation, and the Pacific/North American patterns. Results show that the Isentropic Potential Vorticity (IPV) analysis can be a very useful and powerful tool when used to understand the dynamics of several large scale atmospheric systems. Although the data are limited to only one winter, and it is difficult to assess the statistical significance of the correlation coefficients presented here, the results are encouraging from physical viewpoint.
Document ID
19910007203
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Barcilon, Albert
(Florida State Univ. Tallahassee, FL, United States)
Weng, Hengyi
(Florida State Univ. Tallahassee, FL, United States)
Date Acquired
September 6, 2013
Publication Date
October 1, 1990
Publication Information
Publication: NASA, Marshall Space Flight Center, NASA(MSFC FY90 Global Scale Atmospheric Processes Research Program Review
Subject Category
Meteorology And Climatology
Accession Number
91N16516
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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