Atmospheric River detection under changing seasonality and mean‐state climate: ARTMIP tier 2 paleoclimate experiments

Atmospheric rivers (ARs) are filamentary structures within the atmosphere that account for a substantial portion of poleward moisture transport and play an important role in Earth's hydroclimate. However, there is no one quantitative definition for what constitutes an atmospheric river, leading to uncertainty in quantifying how these systems respond to global change. This study seeks to better understand how different AR detection tools (ARDTs) respond to changes in climate states utilizing single‐forcing climate model experiments under the aegis of the Atmospheric River Tracking Method Intercomparison Project (ARTMIP). We compare a simulation with an early Holocene orbital configuration and another with CO 2 levels of the Last Glacial Maximum to a preindustrial control simulation to test how the ARDTs respond to changes in seasonality and mean climate state, respectively. We find good agreement among the algorithms in the AR response to the changing orbital configuration, with a poleward shift in AR frequency that tracks seasonal poleward shifts in atmospheric water vapor and zonal winds. In the low CO 2 simulation, the algorithms generally agree on the sign of AR changes, but there is substantial spread in their magnitude, indicating that mean‐state changes lead to larger uncertainty. This disagreement likely arises primarily from differences between algorithms in their thresholds for water vapor and its transport used for identifying ARs. These findings warrant caution in ARDT selection for paleoclimate and climate change studies in which there is a change to the mean climate state, as ARDT selection contributes substantial uncertainty in such cases.

To Access Resource:

Questions? Email Resource Support Contact:

  • opensky@ucar.edu
    UCAR/NCAR - Library

Resource Type publication
Temporal Range Begin N/A
Temporal Range End N/A
Temporal Resolution N/A
Bounding Box North Lat N/A
Bounding Box South Lat N/A
Bounding Box West Long N/A
Bounding Box East Long N/A
Spatial Representation N/A
Spatial Resolution N/A
Related Links N/A
Additional Information N/A
Resource Format PDF
Standardized Resource Format PDF
Asset Size N/A
Legal Constraints

Copyright 2025 American Geophysical Union (AGU).


Access Constraints None
Software Implementation Language N/A

Resource Support Name N/A
Resource Support Email opensky@ucar.edu
Resource Support Organization UCAR/NCAR - Library
Distributor N/A
Metadata Contact Name N/A
Metadata Contact Email opensky@ucar.edu
Metadata Contact Organization UCAR/NCAR - Library

Author Rush, W. D.
Lora, J. M.
Skinner, C. B.
Menemenlis, S. A.
Shields, Christine A.
Ullrich, P.
O’Brien, T. A.
Brands, S.
Guan, B.
Mattingly, K. S.
McClenny, E.
Nardi, K.
Nellikkattil, A.
Ramos, A. M.
Reid, K. J.
Shearer, E.
Tomé, R.
Wille, J. D.
Leung, L. R.
Ralph, F. M.
Rutz, J. J.
Wehner, M.
Zhang, Z.
Lu, M.
Quagraine, K. T.
Publisher UCAR/NCAR - Library
Publication Date 2025-01-01T00:00:00
Digital Object Identifier (DOI) Not Assigned
Alternate Identifier N/A
Resource Version N/A
Topic Category geoscientificInformation
Progress N/A
Metadata Date 2025-07-10T19:55:13.218375
Metadata Record Identifier edu.ucar.opensky::articles:42663
Metadata Language eng; USA
Suggested Citation Rush, W. D., Lora, J. M., Skinner, C. B., Menemenlis, S. A., Shields, Christine A., Ullrich, P., O’Brien, T. A., Brands, S., Guan, B., Mattingly, K. S., McClenny, E., Nardi, K., Nellikkattil, A., Ramos, A. M., Reid, K. J., Shearer, E., Tomé, R., Wille, J. D., Leung, L. R., Ralph, F. M., Rutz, J. J., Wehner, M., Zhang, Z., Lu, M., Quagraine, K. T.. (2025). Atmospheric River detection under changing seasonality and mean‐state climate: ARTMIP tier 2 paleoclimate experiments. UCAR/NCAR - Library. https://n2t.net/ark:/85065/d7sj1qzd. Accessed 12 August 2025.

Harvest Source