Leaf water and stem cellulose oxygen isotope ratios simulated with global dynamic vegetation model LPX-Bern
Authors/Creators
- 1. University of Berne, Agroscope
- 2. University of Berne
- 3. Paul Scherrer Institute
- 4. Swiss Federal Research Institute WSL
Description
Description of leaf water and stem cellulose oxygen isotope ratios simulated with LPX-Bern
Citation of describing paper:
Keel SG, Joos F, Spahni R, Saurer M, Weigt RB, Klesse S. 2016. Simulating oxygen isotope ratios in tree ring cellulose using a dynamic global vegetation model, Biogeosciences, 13, 3869–3886, 2016 doi:10.5194/bg-13-3869-2016
download: www.biogeosciences.net/13/3869/2016/
General Information: Format: NetCDF, gridded
Model: Dynamic global vegetation model LPX-Bern Version 1.0 (Land surface Processes and eXchanges, Bern) (Spahni et al., 2013; Stocker et al., 2013)
Resolution: 3.75° x 2.5° lat/lon global Time: Monthly from Jan 1960 to Dec 2012
Variables:
cellu18: monthly stem cellulose δ18O (per mil) lw18: monthly leaf water δ18O (per mil) -2 NPP: monthly net primary production (g C m ) FPC: monthly fractional plant cover
Dimensions: i=longitude, j=latitude, l=time, k=plant functional type Codes for plant functional types (k):
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1 tropical broad-leaved evergreen
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2 tropical broad-leaved deciduous (raingreen)
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3 temperate needle-leaved evergreen
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4 temperate broad-leaved evergreen
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5 temperate broad-leaved deciduous (summergreen)
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6 boreal needle-leaved evergreen
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7 boreal needle-leaved deciduous (summergreen)
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8 boreal broad-leaved deciduous (summergreen)
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9 temperate herbaceous
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10 tropical herbaceous
Files
Files
(547.1 MB)
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Additional details
References
- Keel SG, Joos F, Spahni R, Saurer M, Weigt RB, Klesse S. 2016. Simulating oxygen isotope ratios in tree ring cellulose using a dynamic global vegetation model, Biogeosciences, 13, 3869–3886, 2016 doi:10.5194/bg-13-3869-2016