Blocked coastal propagation inhibits model representation of Southeast United States coastal sea level variability

Little, C. M., Yeager, S., Ponte, R. M., Donatelli, C.. (2026). Blocked coastal propagation inhibits model representation of Southeast United States coastal sea level variability. Geophysical Research Letters, doi:https://doi.org/10.1029/2025GL118781

Title Blocked coastal propagation inhibits model representation of Southeast United States coastal sea level variability
Genre Article
Author(s) C. M. Little, Stephen Yeager, R. M. Ponte, C. Donatelli
Abstract Previous studies indicate that climate models misrepresent southeast United States coastal sea level variability but do not propose a definitive mechanistic explanation. Here, by isolating a mode of variability responsible for the majority of observed nonseasonal United States East Coast (USEC) sea level variance and comparing its representation in ocean models of differing horizontal resolution, we identify a critical role for oceanic coastal propagation. At 1° horizontal resolution, southward propagation of energy is almost entirely blocked by deep coastal bathymetry near Cape Hatteras. Simulation of daily-to-monthly USEC sea level at 1° is greatly improved by decreasing the depth of coastal grid cells. It is likely that bathymetry-induced errors influence the representation of coastal sea level in other locations and over longer time scales. Improvements will require either alterations to bathymetry or higher grid resolution near coastlines.
Publication Title Geophysical Research Letters
Publication Date Apr 16, 2026
Publisher's Version of Record https://doi.org/10.1029/2025GL118781
OpenSky Citable URL https://n2t.net/ark:/85065/d7jq15jz
OpenSky Listing View on OpenSky
CGD Affiliations ESP

< Back