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The Spring Minimum in Subseasonal 2-m Temperature Forecast Skill over North America.

Authors :
Breeden, Melissa L.
Albers, John R.
Butler, Amy H.
Newman, Matthew
Source :
Monthly Weather Review. Oct2022, Vol. 150 Issue 10, p2617-2628. 12p. 7 Maps.
Publication Year :
2022

Abstract

On average, 2-m temperature forecasts over North America for lead times greater than two weeks have generally low skill in operational dynamical models, largely because of the chaotic, unpredictable nature of daily weather. However, for a small subset of forecasts, more slowly evolving climate processes yield some predictable signal that may be anticipated in advance, occasioning "forecasts of opportunity." Forecasts of opportunity evolve seasonally, since they are a function of the seasonally varying jet stream and various remote forcings such as tropical heating. Prior research has demonstrated that for boreal winter, an empirical dynamical modeling technique called a linear inverse model (LIM), whose forecast skill is typically comparable to operational forecast models, can successfully identify forecasts of opportunity both for itself and for other dynamical models. In this study, we use a set of LIMs to examine how subseasonal North American 2-m temperature potential predictability and forecasts of opportunity vary from boreal winter through summer. We show how LIM skill evolves during the three phases of the spring transition of the North Pacific jet—late winter, spring, and early summer—revealing clear differences in each phase and a distinct skill minimum in spring. We identify a subset of forecasts with markedly higher skill in all three phases, despite LIM temperature skill that is somewhat low on average. However, skill improvements are only statistically significant during winter and summer, again reflecting the spring subseasonal skill minimum. The spring skill minimum is consistent with the skill predicted from theory and arises due to a minimum in LIM forecast signal-to-noise ratio. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00270644
Volume :
150
Issue :
10
Database :
Academic Search Index
Journal :
Monthly Weather Review
Publication Type :
Academic Journal
Accession number :
160138195
Full Text :
https://doi.org/10.1175/MWR-D-22-0062.1