Comparing global models of terrestrial net primary productivity (NPP): the importance of water availability
- 1 April 1999
- journal article
- research article
- Published by Wiley in Global Change Biology
- Vol. 5 (S1) , 46-55
- https://doi.org/10.1046/j.1365-2486.1999.00006.x
Abstract
Summary: Given that neither absolute measures nor direct model validations of global terrestrial net primary productivity (NPP) are feasible, intercomparison of global NPP models provides an effective tool to check model consistency. For this study, we tested the assumption that water availability is the primary limiting factor of NPP in global terrestrial biospheric models. We compared a water balance coefficient (WBC), calculated as the difference of mean annual precipitation and potential evapotranspiration to NPP for each grid cell (0.5° × 0.5° longitude/latitude) in each of 14 models. We also evaluated different approaches used for introducing water budget limitations on NPP: (1) direct physiological control on evapotranspiration through canopy conductance; (2) climatological computation of constraints from supply/demand for ecosystem productivity; and (3) water limitation inferred from satellite data alone. Plots of NPP vs. WBC showed comparable patterns for the models using the same method for water balance limitation on NPP. While correlation plots revealed similar patterns for most global models, other environmental controls on NPP introduced substantial variability.Keywords
This publication has 34 references indexed in Scilit:
- Interception and use efficiency of light in winter wheat under different nitrogen regimesPublished by Elsevier ,2003
- Comparing global models of terrestrial net primary productivity (NPP): overview and key resultsGlobal Change Biology, 1999
- Parameterisation of a global daily weather generator for terrestrial ecosystem modellingEcological Modelling, 1998
- Contrasting Climatic Controls on the Estimated Productivity of Global Terrestrial BiomesEcosystems, 1998
- The Response of Global Terrestrial Ecosystems to Interannual Temperature VariabilityScience, 1997
- Intercomparison of Methods for Calculating Potential Evaporation in Regional and Global Water Balance ModelsWater Resources Research, 1996
- A Large Northern Hemisphere Terrestrial CO 2 Sink Indicated by the 13 C/ 12 C Ratio of Atmospheric CO 2Science, 1995
- Transpirational supply and demand: Plant, soil, and atmospheric effects evaluated by simulationWater Resources Research, 1982
- Environmental Limits on Aboveground Net Primary Production, Leaf Area, and Biomass in Vegetation Zones of the Pacific NorthwestEcology, 1982
- Leaf Area of Mature Northwestern Coniferous Forests: Relation to Site Water BalanceEcology, 1977