Related Experiment Video
Updated: Jul 8, 2025

Visualizing Hyporheic Flow Through Bedforms Using Dye Experiments and Simulation
Published on: November 18, 2015
Self-similarity and vanishing diffusion in fluvial landscapes
Shashank Kumar Anand1, Matteo B Bertagni2, Theodore D Drivas3
1Department of Civil and Environmental Engineering, Princeton University, Princeton, NJ 08544.
Abstract:
Complex topographies exhibit universal properties when fluvial erosion dominates landscape evolution over other geomorphological processes. Similarly, we show that the solutions of a minimalist landscape evolution model display invariant behavior as the impact of soil diffusion diminishes compared to fluvial erosion at the landscape scale, yielding complete self-similarity with respect to a dimensionless channelization index. Approaching its zero limit, soil diffusion becomes confined to a region of vanishing area and large concavity or convexity, corresponding to the locus of the ridge and valley network. We demonstrate these results using one dimensional analytical solutions and two dimensional numerical simulations, supported by real-world topographic observations. Our findings on the landscape self-similarity and the localized diffusion resemble the self-similarity of turbulent flows and the role of viscous dissipation. Topographic singularities in the vanishing diffusion limit are suggestive of shock waves and singularities observed in nonlinear complex systems.
Related Concept Videos
Typical Model Studies
Modeling and Similitude
Rapidly Varying Flow
Streamlines, Streaklines, and Pathlines
Plane Potential Flows
Uniform...
Steady, Laminar Flow Between Parallel Plates

