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  Comparing global models of terrestrial net primary productivity (NPP): overview and key results

Cramer, W., Kicklighter, D. W., Bondeau, A., Moore Iii, B., Churkina, G., Nemry, B., et al. (1999). Comparing global models of terrestrial net primary productivity (NPP): overview and key results. Global Change Biology, 5(Suppl. 1), 1-15.

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Cramer, W., Author
Kicklighter, D. W., Author
Bondeau, A., Author
Moore Iii, B., Author
Churkina, G.1, Author           
Nemry, B., Author
Ruimy, A., Author
Schloss, A. L., Author
Colinet, G., Author
Collatz, J., Author
Dedieu, G., Author
Emanuel, W., Author
Esser, G., Author
Field, C., Author
Francois, L., Author
Friend, A., Author
Haxeltine, A., Author
Heimann, M.1, Author           
Hoffstadt, J., Author
Kaduk, J., Author
Kergoat, L., AuthorKnorr, W., AuthorKohlmaier, G., AuthorLurin, B., AuthorMaisongrande, P., AuthorMartin, P., AuthorMckeown, R., AuthorMeeson, B., AuthorNemani, R., AuthorOlson, R., AuthorOtto, R., AuthorParton, W., AuthorPlöchl, M., AuthorPrince, S., AuthorRanderson, J., AuthorRasool, I., AuthorRizzo, B., AuthorRunning, S., AuthorSahagian, D., AuthorSaugier, B., AuthorScurlock, J., AuthorSteffen, W., AuthorWarnant, P., AuthorWittenberg, U., Author more..
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Free keywords: Npp Seasonal Global Model CO2 Surface parameterization sib2 General-circulation models Gross primary productivity Frankfurt biosphere model Carbon-cycle models Ndvi data set Atmospheric CO2 Biophysical parameters Equilibrium responses Vegetation structure
 Abstract: Seventeen global models of terrestrial biogeochemistry were compared with respect to annual and seasonal fluxes of net primary productivity (NPP) for the land biosphere. The comparison, sponsored by IGBP-GAIM/DIS/GCTE, used standardized input variables wherever possible and was carried out through two international workshops and over the Internet. The models differed widely in complexity and original purpose, but could be grouped in three major categories: satellite-based models that use data from the NOAA/AVHRR sensor as their major input stream (CASA, GLO-PEM, SDBM, SIB2 and TURC), models that simulate carbon fluxes using a prescribed vegetation structure (BIOME-BGC, CARAIB 2.1, CENTURY 4.0, FBM 2.2 HRBM 3.0, KGBM, PLAI 0.2, SILVAN 2.2 and TEM 4.0), and models that simulate both vegetation structure and carbon fluxes (BIOME3, DOLY and HYBRID 3.0). The simulations resulted in a range of total NPP values (44.4-66.3 Pg C year(-1)), after removal of two outliers (which produced extreme results as artefacts due to the comparison). The broad global pattern of NPP and the relationship of annual NPP to the major climatic variables coincided in most areas. Differences could not be attributed to the fundamental modelling strategies, with the exception that nutrient constraints generally produced lower NPP. Regional and global NPP were sensitive to the simulation method for the water balance. Seasonal variation among models was high, both globally and locally, providing several indications for specific deficiencies in some models. [References: 91]

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 Dates: 1999
 Publication Status: Issued
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 Identifiers: Other: BGC0122
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Title: Global Change Biology
Source Genre: Journal
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Publ. Info: Oxford, UK : Blackwell Science
Pages: - Volume / Issue: 5 (Suppl. 1) Sequence Number: - Start / End Page: 1 - 15 Identifier: CoNE: https://pure.mpg.de/cone/journals/resource/954925618107
ISSN: 1354-1013