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Multiple equilibria on planet Dune: climate–vegetation dynamics on a sandy planet Cover

Multiple equilibria on planet Dune: climate–vegetation dynamics on a sandy planet

Open Access
|Jan 2013

Abstract

We study the interaction between climate and vegetation on an ideal water-limited planet, focussing on the influence of vegetation on the global water cycle. We introduce a simple mechanistic box model consisting in a two-layer representation of the atmosphere and a two-layer soil scheme. The model includes the dynamics of vegetation cover, and the main physical processes of energy and water exchange among the different components. With a realistic choice of parameters, this model displays three stable equilibria, depending on the initial conditions of soil water and vegetation cover. The system reaches a hot and dry state for low values of initial water content and/or vegetation cover, while we observe a wet, vegetated state with mild surface temperature when the system starts from larger initial values of both variables. The third state is a cold desert, where plants transfer enough water to the atmosphere to start a weaker, evaporation-dominated water cycle before they wilt. These results indicate that in this system vegetation plays a central role in transferring water from the soil to the atmosphere and trigger a hydrologic cycle. The model adopted here can also be used to conceptually illustrate processes and feedbacks affecting the water cycle in water-limited continental areas on Earth. †Now at: International Max Planck Research School on Earth System Modelling, Hamburg, Germany

Language: English
Page range: 17662 - 17662
Submitted on: Feb 28, 2012
Accepted on: Nov 18, 2012
Published on: Jan 1, 2013
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2013 Fabio Cresto Aleina, Mara Baudena, Fabio D’Andrea, Antonello Provenzale, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.