Scinovex
articleTop 1% cited

New Perspectives on the Northern Hemisphere Winter Storm Tracks

Journal of the Atmospheric Sciences · 2002 · Vol. 59(6) · pp. 1041–1061
Brian J. HoskinsKevin I. Hodges

Abstract

The aim of this paper is to explore the use of both an Eulerian and system-centered method of storm track diagnosis applied to a wide range of meteorological fields at multiple levels to provide a range of perspectives on the Northern Hemisphere winter transient motions and to give new insight into the storm track organization and behavior. The data used are primarily from the European Centre for Medium-Range Weather Forecasts reanalyses project extended with operational analyses to the period 1979-2000. This is supplemented by data from the National Centers for Environmental Prediction and Goddard Earth Observing System 1 reanalyses. The range of fields explored include the usual mean sea level pressure and the lower- and upper-tropospheric height, meridional wind, vorticity, and temperature, as well as the potential vorticity (PV) on a 330-K isentropic surface (PV330) and potential temperature on a PV = 2 PVU surface (theta(PV2)). As well as reporting the primary analysis based on feature tracking, the standard Eulerian 2-6-day bandpass filtered variance analysis is also reported and contrasted with the tracking diagnostics. To enable the feature points to be identified as extrema for all the chosen fields, a planetary wave background structure is removed at each data time. The bandpass filtered variance derived from the different fields yield a rich picture of the nature and comparative magnitudes of the North Pacific and Atlantic storm tracks, and of the Siberian and Mediterranean candidates for storm tracks. The feature tracking allows the cyclonic and anticyclonic activities to be considered seperately. The analysis indicates that anticyclonic features are generally much weaker with less coherence than the cyclonic systems. Cyclones and features associated with them are shown to have much greater coherence and give tracking diagnostics that create a vivid storm track picture that includes the aspects highlighted by the variances as well as highlighting aspects that are not readily available from Eulerian studies. In particular, the upper-tropospheric features as shown by negative theta(PV2), for example, occur in a band spiraling around the hemisphere from the subtropical North Atlantic eastward to the high latitudes of the same ocean basin. Lower-troposphere storm tracks occupy more limited longitudinal sectors, with many of the individual storms possibly triggered from the upper-tropospheric disturbances in the spiral band of activity.

Climate variability and modelsMeteorological Phenomena and SimulationsTropical and Extratropical Cyclones ResearchNorthern HemisphereClimatologyStorm trackAnticycloneStormWinter stormEnvironmental scienceMeteorologyPotential vorticityMiddle latitudes

Funding

  • Centers for Disease Control and Prevention
Citations
967
FWCI
13.31
field-weighted impact
References
31
Percentile
99%
vs. same field & year
Citations per year
References
The NCEP/NCAR 40-Year Reanalysis Project
Bulletin of the American Meteorological Society · 1996 · 29,024 citations
Related articles
New Perspectives on the Northern Hemisphere Winter Storm Tracks
Journal of the Atmospheric Sciences · 2002 · 967 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

New Perspectives on the Northern Hemisphere Winter Storm Tracks · Scinovex