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Better practices for inferring ecosystem water use strategy from eddy covariance data

Research output: Contribution to journalArticlepeer-review

Abstract

Eddy covariance data are critical for inferring ecosystem water use strategies. Yet, such inferences are sensitive to a range of assumptions applied across studies, hindering our understanding of water use strategies within and across eddy covariance sites. A recent analysis across 151 FLUXNET2015 and AmeriFlux-FLUXNET datasets found that poor model performance was the key driver of non-robust inferences of ecosystem water use strategies. Here, we leverage this previous analysis to (i) identify the specific assumptions that improve inference model performance across most sites, (ii) explain the mechanisms behind the performance improvements, and (iii) check whether better performance improves water use inference. We find that the common practice of fitting a model to canopy conductance (Gc) derived from the evapotranspiration (ET) observations, rather than to observed ET itself, artificially amplifies data errors and degrades the model performance. Next, accounting for vegetation dynamics by applying a growing season filter or incorporating satellite LAI data improves performance, but the former practice may remove soil water stress periods. Lastly, using the leaf-to-air vapor pressure deficit (VPDl) derived from ET observations as a model input may artificially inflate performance. Based on these results, we recommend selecting observed ET (rather than derived Gc) as the response variable, carefully accounting for vegetation dynamics, and avoiding derived VPDl as a model input; these best practices improve model performance by c. 20% and robustness by c. 80% across all eddy covariance sites. Nevertheless, the performance improvements do not always correspond to more robust inference of water use strategies, as model parameter selection and surface energy budget closure corrections still strongly influence the ecosystem water use parameter estimation in a site-specific manner.

Original languageEnglish (US)
Article number110737
JournalAgricultural and Forest Meteorology
Volume373
DOIs
StatePublished - Oct 15 2025

Bibliographical note

Publisher Copyright:
© 2025 Elsevier B.V.

Keywords

  • AmeriFlux
  • Drought
  • Ecosystem stress
  • Ecosystem water use strategy
  • Eddy covariance
  • FLUXNET2015
  • Robustness
  • Soil water stress

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