Mathematical models of vegetation pattern formation in ecohydrology
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Open Access
- 18 March 2009
- journal article
- review article
- Published by American Geophysical Union (AGU) in Reviews of Geophysics
- Vol. 47 (1)
- https://doi.org/10.1029/2007rg000256
Abstract
Highly organized vegetation patterns can be found in a number of landscapes around the world. In recent years, several authors have investigated the processes underlying vegetation pattern formation. Patterns that are induced neither by heterogeneity in soil properties nor by the local topography are generally explained as the result of spatial self‐organization resulting from “symmetry‐breaking instability” in nonlinear systems. In this case, the spatial dynamics are able to destabilize the homogeneous state of the system, leading to the emergence of stable heterogeneous configurations. Both deterministic and stochastic mechanisms may explain the self‐organized vegetation patterns observed in nature. After an extensive analysis of deterministic theories, we review noise‐induced mechanisms of pattern formation and provide some examples of applications relevant to the environmental sciences.Keywords
This publication has 204 references indexed in Scilit:
- Facilitation, competition, and vegetation patchiness: From scale free distribution to patternsJournal of Theoretical Biology, 2008
- Regular pattern formation in real ecosystemsPublished by Elsevier ,2008
- Self-organization and productivity in semi-arid ecosystems: Implications of seasonality in rainfallJournal of Theoretical Biology, 2007
- A mathematical model of plants as ecosystem engineersJournal of Theoretical Biology, 2007
- Magnitude-frequency analysis of water redistribution along a climate gradient in SpainCATENA, 1999
- Banded vegetation near Broken Hill, Australia: significance of surface roughness and soil physical propertiesCATENA, 1999
- Vegetation arcs and litter dams: similarities and differencesCATENA, 1999
- Noise-induced Regularity of Spatial Wave Patterns in SubalpineAbiesForestsJournal of Theoretical Biology, 1998
- Pattern Formation in a Patch Occupancy Metapopulation Model: a Cellular Automata ApproachJournal of Theoretical Biology, 1998
- Vegetation change in large clearings: Patterns in the Chilean matorralOecologia, 1986