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DOE OSTI · 3010631

Geospatial Diffusion for Land Cover Imperviousness Change Forecasting

Abstract

Land-use and land-cover (LULC) has a significant effect on several Earth system processes. For example, impervious surfaces reduce infiltration and speed water flow, impacting regional hydrology and flood risk. While Earth System models have improved forecasting hydrologic and atmospheric processes at higher resolutions, the ability to forecast LULC change has lagged behind. In this paper, we propose a new paradigm exploiting Generative AI (GenAI) for land cover change forecasting by framing it as a data synthesis problem conditioned on historical and auxiliary data-sources. To demonstrate the feasibility of our methodology, we perform experiments where a diffusion model is trained for decadal forecasting of imperviousness change across the entire United States. We find that our model yields MAE lower than a no-change baseline for resolutions ≥ 0.7 X 0.7km2 on average, demonstrating its ability to capture and project accurate spatiotemporal patterns. Finally, we discuss future research to incorporate Earth's physical properties and enabling scenario simulations via driver variables.

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BibTeXRIS

Varshney, Debvrat [ORNL] (ORCID:0000000188981736), Vats, Vibhas [Indiana University, Bloomington], Pandey, Bhartendu [ORNL] (ORCID:0000000237125961), Brelsford, Christa [Los Alamos National Laboratory (LANL)], Ambrozio Dias, Philipe [ORNL] (ORCID:0000000194277112). 2025-12-01. Geospatial Diffusion for Land Cover Imperviousness Change Forecasting. https://doi.org/10.1145/3748636.3762730

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