Atmospheric Rivers in the eastern and midwestern United States associated with baroclinic waves

Atmospheric rivers (ARs) significantly impact the hydrological cycle and associated extremes in western continental regions. Recent studies suggest ARs also influence water resources and extremes in continental interiors. AR detection tools indicate that AR conditions are relatively frequent in areas east of the Rocky Mountains. The origin of these ARs, whether from synoptic-scale waves or mesoscale processes, is unclear. This study uses meteorological composite maps and transects of AR conditions during the four seasons. The analysis reveals that ARs east of the Rockies are associated with long-wave, baroclinic Rossby waves. This result demonstrates that eastern North American ARs are dynamically similar to their western coastal counterparts, though mechanisms for vertical moisture flux differ between the two. These findings provide a foundation for understanding future climate change and ARs in this region and offer new methods for evaluating climate model simulations.

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Related Dataset #1 : Atmospheric River Tracking Method Intercomparison Project Tier 1 Source Data and Catalogues

Related Software #1 : Analysis code for "Atmospheric Rivers in the Eastern and Midwestern United States Associated with Baroclinic Waves"

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Author O'Brien, T. A.
Loring, B.
Dufek, A. S.
Islam, Mohammad Rubaiat
Kamnani, D.
Quagraine, K. T.
Kirkpatrick, C.
Publisher UCAR/NCAR - Library
Publication Date 2024-04-28T00:00:00
Digital Object Identifier (DOI) Not Assigned
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Topic Category geoscientificInformation
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Metadata Date 2025-07-10T20:02:35.039884
Metadata Record Identifier edu.ucar.opensky::articles:27168
Metadata Language eng; USA
Suggested Citation O'Brien, T. A., Loring, B., Dufek, A. S., Islam, Mohammad Rubaiat, Kamnani, D., Quagraine, K. T., Kirkpatrick, C.. (2024). Atmospheric Rivers in the eastern and midwestern United States associated with baroclinic waves. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7571h6c. Accessed 11 August 2025.

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