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Coupling global models of vegetation structure and ecosystem processes Cover

Coupling global models of vegetation structure and ecosystem processes

Open Access
|Jan 1995

References

  1. Box , E. O . 1981. Macroclimate and plant forms: an intro-duction to predictive modeling in phytogeography. The Hague: Dr. W. Junk Publishers, 258 pp.
  2. Hansen , J. E. , Fung , I. Y. , Lacis , A. A. , Rind , D. , Lebedeff , S. , Ruedy , R. , Russell , G. and Stone , P . 1988 . Global climate changes as forecast by the Goddard Institute for Space Studies three dimensional model . J. Geophys. Res . 93 ( D8 ), 9541 9364 .
  3. Leemans , R. and Cramer , W . 1991 . The HASA database for mean monthly values of temperature , precipitation and cloudiness of a global terrestrial grid. International Institute for Applied Systems Analysis (IIASA ), Laxenburg, Austria . ( RR-91-18 ).
  4. Leemans , R. , Cramer , W. and Van Minnen , J. G . 1995 . Prediction of global biome distribution using bioclimatic equilibrium models . In: Melillo , J. M. and Breymeyer , A. (eds.): C c ycling in grassland and forested ecosystems. New York: SCOPE , John Wiley and Sons .
  5. Lüdeke , M. K. B. , Badeck , F.-W. , Otto , R. D. , Hager , C. , Dönges , S. , Kindermann , J. , Wiirth , G. , Lang , T. , Mel , U. , Klaudius , A. , Ramge , P. , Habermehl , S. and Kohlmaier , G. H . 1994 . The Frankfurt biosphere model. A global process oriented model for the seasonal and long-term CO2 exchange between terrestrial ecosystems and the atmosphere (I). Model description and illustrative results for cold deciduous and boreal forests . aim. Res . 4 , 143 166 .
  6. Lüdeke , M. K. B. , D6nges , S. , Otto , R. D. , Kindermann , J. , Badeck , F.-W. , Ramge , P. , Jäkel , U. and Kohlmaier , G. H . 1995 . Responses in npp and carbon stores of the Northern biomes to a CO2-induced climatic change, as evaluated by the Frankfurt Biosphere Model (FBM) . Tellus 47B , 191 205 .
  7. Matthews , E . 1985. Atlas of archived vegetation, land-use and seasonal albedo data sets. Goddard Institute for Space Studies. NASA Technical Memorandum.
  8. Melillo , J. M. , McGuire , A. D. , Kicklighter , D. W. , Moore III , B. , Vörösmarty , C. J. and Schloss , A. L . 1993 . Global climate change and terrestrial net primary production . Nature 363 , 234 240 .
  9. Olson , J. , Watts , J. A. and Allison , L. J . 1983 . Carbon in live vegetation of major world ecosystems . Oak Ridge National Laboratory (ORNL- 5862 ).
  10. Prentice , I. C. , Cramer , W. , Harrison , S. P. , Leemans , R. , Monserud , R. A. and Solomon , A. M . 1992 . A global biome model based on plant physiology and dominance, soil properties and climate . J. Biogeogr . 19 , 117 134 .
  11. Shea , D. J . 1986. Climatological Atlas: 1950-1979. Surface air temperature, precipitation, sea-level pressure, and sea-surface temperature (45° S-90° N). National Center for Atmospheric Research, Boulder, Colorado, USA. NCAR Technical Note.
  12. Smith , T. M. , Cramer , W. , Dixon , R. K. , Leemans , R. , Neilson , R. P. and Solomon , A. M . 1993 . The global terrestrial carbon cycle . Wat. Air and Soil Poll . 70 , 19 37 .
Language: English
Page range: 240 - 250
Submitted on: Dec 29, 1993
Accepted on: Sep 21, 1994
Published on: Jan 1, 1995
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 1995 Matthias Plöchl, Wolfgang Cramer, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.