A dynamical systems analysis of the data assimilation linked ecosystem carbon (DALEC) models

  • Chuter A
  • Aston P
  • Skeldon A
  • et al.
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Abstract

Changes in our climate and environment make it ever more important to understand the processes involved in Earth systems, such as the carbon cycle. There are many models that attempt to describe and predict the behaviour of carbon stocks and stores but, despite their complexity, significant uncertainties remain. We consider the qualitative behaviour of one of the simplest carbon cycle models, the Data Assimilation Linked Ecosystem Carbon (DALEC) model, which is a simple vegetation model of processes involved in the carbon cycle of forests, and consider in detail the dynamical structure of the model. Our analysis shows that the dynamics of both evergreen and deciduous forests in DALEC are dependent on a few key parameters and it is possible to find a limit point where there is stable sustainable behaviour on one side but unsustainable conditions on the other side. The fact that typical parameter values reside close to this limit point highlights the difficulty of predicting even the correct trend without sufficient data and has implications for the use of data assimilation methods.

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Chuter, A. M., Aston, P. J., Skeldon, A. C., & Roulstone, I. (2015). A dynamical systems analysis of the data assimilation linked ecosystem carbon (DALEC) models. Chaos: An Interdisciplinary Journal of Nonlinear Science, 25(3). https://doi.org/10.1063/1.4897912

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