Interannual global carbon cycle variations linked to atmospheric circulation variability

One of the least understood temporal scales of global carbon cycle (C-cycle) dynamics is its interannual variability (IAV). This variability is mainly driven by variations in the local climatic drivers of terrestrial ecosystem activity, which in turn are controlled by large-scale modes of atmospheri...

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Veröffentlicht in:Earth system dynamics 2022-11, Vol.13 (4), p.1505-1533
Hauptverfasser: Li, Na, Sippel, Sebastian, Winkler, Alexander J, Mahecha, Miguel D, Reichstein, Markus, Bastos, Ana
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Sprache:eng
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Zusammenfassung:One of the least understood temporal scales of global carbon cycle (C-cycle) dynamics is its interannual variability (IAV). This variability is mainly driven by variations in the local climatic drivers of terrestrial ecosystem activity, which in turn are controlled by large-scale modes of atmospheric variability. Here, we quantify the fraction of global C-cycle IAV that is explained by large-scale atmospheric circulation variability, which is quantified by spatiotemporal sea level pressure (SLP) fields. C-cycle variability is diagnosed from the global detrended atmospheric CO.sub.2 growth rate and the land CO.sub.2 sink from 16 dynamic global vegetation models and two atmospheric inversions in the Global Carbon Budget 2018. We use a regularized linear regression model, which represents a statistical learning technique apt to deal with the large number of atmospheric circulation predictors (pâ¥800, each representing one pixel-based time series of SLP anomalies) in a relatively short observed record (n
ISSN:2190-4987
2190-4979
2190-4987
DOI:10.5194/esd-13-1505-2022