Soil nutrient cycles as a nonlinear dynamical system

An analytical model for the soil carbon and nitrogen cycles is studied from the dynamical system point of view. Its main nonlinearities and feedbacks are analyzed by considering the steady state solution under deterministic hydro-climatic conditions. It is shown that, changing hydro-climatic conditi...

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Main Authors: S. Manzoni, A. Porporato, P. D'Odorico, F. Laio, I. Rodriguez-Iturbe
Format: Article
Language:English
Published: Copernicus Publications 2004-01-01
Series:Nonlinear Processes in Geophysics
Online Access:http://www.nonlin-processes-geophys.net/11/589/2004/npg-11-589-2004.pdf
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spelling doaj-fe4083a5bc984043ba4a0278d2c87b782020-11-24T22:38:21ZengCopernicus PublicationsNonlinear Processes in Geophysics1023-58091607-79462004-01-01115/6589598Soil nutrient cycles as a nonlinear dynamical systemS. ManzoniA. PorporatoP. D'OdoricoF. LaioI. Rodriguez-IturbeAn analytical model for the soil carbon and nitrogen cycles is studied from the dynamical system point of view. Its main nonlinearities and feedbacks are analyzed by considering the steady state solution under deterministic hydro-climatic conditions. It is shown that, changing hydro-climatic conditions, the system undergoes dynamical bifurcations, shifting from a stable focus to a stable node and back to a stable focus when going from dry, to well-watered, and then to saturated conditions, respectively. An alternative degenerate solution is also found in cases when the system can not sustain decomposition under steady external conditions. Different basins of attraction for 'normal' and 'degenerate' solutions are investigated as a function of the system initial conditions. Although preliminary and limited to the specific form of the model, the present analysis points out the importance of nonlinear dynamics in the soil nutrient cycles and their possible complex response to hydro-climatic forcing.http://www.nonlin-processes-geophys.net/11/589/2004/npg-11-589-2004.pdf
collection DOAJ
language English
format Article
sources DOAJ
author S. Manzoni
A. Porporato
P. D'Odorico
F. Laio
I. Rodriguez-Iturbe
spellingShingle S. Manzoni
A. Porporato
P. D'Odorico
F. Laio
I. Rodriguez-Iturbe
Soil nutrient cycles as a nonlinear dynamical system
Nonlinear Processes in Geophysics
author_facet S. Manzoni
A. Porporato
P. D'Odorico
F. Laio
I. Rodriguez-Iturbe
author_sort S. Manzoni
title Soil nutrient cycles as a nonlinear dynamical system
title_short Soil nutrient cycles as a nonlinear dynamical system
title_full Soil nutrient cycles as a nonlinear dynamical system
title_fullStr Soil nutrient cycles as a nonlinear dynamical system
title_full_unstemmed Soil nutrient cycles as a nonlinear dynamical system
title_sort soil nutrient cycles as a nonlinear dynamical system
publisher Copernicus Publications
series Nonlinear Processes in Geophysics
issn 1023-5809
1607-7946
publishDate 2004-01-01
description An analytical model for the soil carbon and nitrogen cycles is studied from the dynamical system point of view. Its main nonlinearities and feedbacks are analyzed by considering the steady state solution under deterministic hydro-climatic conditions. It is shown that, changing hydro-climatic conditions, the system undergoes dynamical bifurcations, shifting from a stable focus to a stable node and back to a stable focus when going from dry, to well-watered, and then to saturated conditions, respectively. An alternative degenerate solution is also found in cases when the system can not sustain decomposition under steady external conditions. Different basins of attraction for 'normal' and 'degenerate' solutions are investigated as a function of the system initial conditions. Although preliminary and limited to the specific form of the model, the present analysis points out the importance of nonlinear dynamics in the soil nutrient cycles and their possible complex response to hydro-climatic forcing.
url http://www.nonlin-processes-geophys.net/11/589/2004/npg-11-589-2004.pdf
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AT aporporato soilnutrientcyclesasanonlineardynamicalsystem
AT pdodorico soilnutrientcyclesasanonlineardynamicalsystem
AT flaio soilnutrientcyclesasanonlineardynamicalsystem
AT irodrigueziturbe soilnutrientcyclesasanonlineardynamicalsystem
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