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First application of a coastal-dune model (AeoLiS) to simulate fluvial-aeolian morphodynamics

September 28, 2026

Quantifying aeolian processes is important to decision-making in river management and for optimizing strategies for ecosystem conservation, natural resource management, and recreation. We applied the AeoLiS aeolian transport model, originally developed for coastal environments, to a dryland river corridor to evaluate its ability to simulate sediment dynamics in a fluvial-aeolian system. The model reproduced spatial and temporal patterns of geomorphic change at a Grand Canyon sandbar, including aeolian dune formation, observed in field data. The model effectively captured trends in observed sediment movement in the spring and summer months. Thus, despite assuming a single grain-size, static vegetation, and not directly accounting for variable sediment supply from fluvial sources, the model performs well at capturing aeolian processes in a complex fluvial-aeolian system. AeoLiS demonstrates strong potential for dryland river applications and management, due to its flexibility and compatibility with coupled modeling frameworks.

Publication Year 2026
Title First application of a coastal-dune model (AeoLiS) to simulate fluvial-aeolian morphodynamics
DOI 10.1029/2025GL120694
Authors Madeline Margaret Kelley, Joel B. Sankey, Nicholas Cohn, Amy E. East, Alan Kasprak, Helen C. Fairley, Joshua Caster, B. van Westen
Publication Type Article
Publication Subtype Journal Article
Series Title Geophysical Research Letters
Index ID 70282761
Record Source USGS Publications Warehouse
USGS Organization Southwest Biological Science Center
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