Geoscientific Model Development (Jul 2015)

Global sensitivity analysis, probabilistic calibration, and predictive assessment for the data assimilation linked ecosystem carbon model

  • C. Safta,
  • D. M. Ricciuto,
  • K. Sargsyan,
  • B. Debusschere,
  • H. N. Najm,
  • M. Williams,
  • P. E. Thornton

DOI
https://doi.org/10.5194/gmd-8-1899-2015
Journal volume & issue
Vol. 8, no. 7
pp. 1899 – 1918

Abstract

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In this paper we propose a probabilistic framework for an uncertainty quantification (UQ) study of a carbon cycle model and focus on the comparison between steady-state and transient simulation setups. A global sensitivity analysis (GSA) study indicates the parameters and parameter couplings that are important at different times of the year for quantities of interest (QoIs) obtained with the data assimilation linked ecosystem carbon (DALEC) model. We then employ a Bayesian approach and a statistical model error term to calibrate the parameters of DALEC using net ecosystem exchange (NEE) observations at the Harvard Forest site. The calibration results are employed in the second part of the paper to assess the predictive skill of the model via posterior predictive checks.