Assessing the impact of countergradient fluxes on the general circulation in the Community Atmosphere Model

Nardi, K., Zarzycki, C., Larson, V. E., Stephens, B., Bryan, G. H., et al. (2026). Assessing the impact of countergradient fluxes on the general circulation in the Community Atmosphere Model. Geophysical Research Letters, doi:https://doi.org/10.1029/2025GL121230

Title Assessing the impact of countergradient fluxes on the general circulation in the Community Atmosphere Model
Genre Article
Author(s) Kyle Nardi, Colin Zarzycki, V. E. Larson, Benjamin Stephens, George H. Bryan, Julio Bacmeister
Abstract Parameterizing boundary layer turbulence in Earth System Models (ESMs) introduces a key source of uncertainty. Here, we explore the impact of implementing a prognostic formulation (PMF) for momentum flux, which permits countergradient (CG) fluxes. We implement PMF in the turbulence parameterization in the Community Atmosphere Model version 6 (CAM6). CG fluxes in PMF reduce globally‐integrated momentum flux in CAM6. A similar response in globally‐integrated momentum flux is observed when reducing a tunable diffusivity parameter in the existing diagnostic formulation for momentum flux (DMF). Both methods of reducing effective eddy diffusivity produce qualitatively similar responses in the modeled general circulation, namely an enhanced upward branch of the Hadley cell, increased equatorward low‐level flow, and strengthened meridional temperature and moisture gradients. However, the reduction in effective eddy diffusivity from CG fluxes in PMF produces a higher‐magnitude response in the general circulation compared to reducing the diffusivity parameter in DMF.
Publication Title Geophysical Research Letters
Publication Date Jun 28, 2026
Publisher's Version of Record https://doi.org/10.1029/2025GL121230
OpenSky Citable URL https://n2t.net/ark:/85065/d722309m
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MMM Affiliations DPM

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