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