Energy, water and carbon exchanges in managed forest ecosystems: description, sensitivity analysis and evaluation of the INRAE GO plus model, version 3.0

被引:6
作者
Moreaux, Virginie [1 ,11 ]
Martel, Simon [1 ,10 ]
Bosc, Alexandre [1 ]
Picart, Delphine [1 ]
Achat, David [1 ]
Moisy, Christophe [1 ]
Aussenac, Raphael [1 ]
Chipeaux, Christophe [1 ]
Bonnefond, Jean-Marc [1 ]
Figueres, Soisick [1 ]
Trichetl, Pierre [1 ]
Vezy, Remi [2 ]
Badeau, Vincent [3 ]
Longdoz, Bernard [3 ]
Granier, Andre [3 ]
Roupsard, Olivier [4 ]
Nicolas, Manuel [5 ]
Pilegaard, Kim [6 ]
Matteucci, Giorgio [7 ]
Jolivet, Claudy [8 ]
Black, Andrew T. [9 ]
Picard, Olivier [10 ]
Loustau, Denis [1 ]
机构
[1] INRAE, UMR ISPA, Bordeaux Sci Agro, F-33140 Villenave Dornon, France
[2] Univ Montpellier, INRAE, CNRS, AMAP,CIRAD,IRD, Montpellier, France
[3] INRAE, UMR SILVA 1434, F-54280 Champenoux, France
[4] Univ Montpellier, Montpellier SupAgro, INRAE, Eco&Sols,CIRAD,IRD, Montpellier, France
[5] ONF, Dept RDI, F-77300 Fontainebleau, France
[6] Tech Univ Denmark, Dept Environm Engn, DK-2800 Lyngby, Denmark
[7] CNR, ISAFOM, I-80056 Ercolano, NA, Italy
[8] INRAE, US1106 InfoSol, F-45075 Orleans, France
[9] Fac Land & Food Syst, Vancouver, BC V6T 1Z4, Canada
[10] CNPF IDF, F-75000 Paris, France
[11] Univ Grenoble Alpes, CNRS, UMR IGE 5001, F-38058 Grenoble, France
基金
欧盟地平线“2020”;
关键词
ENVIRONMENT SIMULATOR JULES; 3 ORGANIZATIONAL SCALES; BEECH FAGUS-SYLVATICA; PINUS-PINASTER AIT; MARITIME PINE; CLIMATE-CHANGE; SOIL CARBON; STOMATAL CONDUCTANCE; SAP-FLOW; PHOTOSYNTHETIC CAPACITY;
D O I
10.5194/gmd-13-5973-2020
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The mechanistic model GO+ describes the functioning and growth of managed forests based upon biophysical and biogeochemical processes. The biophysical and biogeochemical processes included are modelled using standard formulations of radiative transfer, convective heat exchange, evapotranspiration, photosynthesis, respiration, plant phenology, growth and mortality, biomass nutrient content, and soil carbon dynamics. The forest ecosystem is modelled as three layers, namely the tree overstorey, understorey and soil. The vegetation layers include stems, branches and foliage and are partitioned dynamically between sunlit and shaded fractions. The soil carbon submodel is an adaption of the Roth-C model to simulate the impact of forest operations. The model runs at an hourly time step. It represents a forest stand covering typically 1 ha and can be straightforwardly upscaled across gridded data at regional, country or continental levels. GO+ accounts for both the immediate and long-term impacts of forest operations on energy, water and carbon exchanges within the soil-vegetation-atmosphere continuum. It includes exhaustive and versatile descriptions of management operations (soil preparation, regeneration, vegetation control, selective thinning, clear-cutting, coppicing, etc.), thus permitting the effects of a wide variety of forest management strategies to be estimated: from close to nature to intensive. This paper examines the sensitivity of the model to its main parameters and estimates how errors in parameter values are propagated into the predicted values of its main output variables.The sensitivity analysis demonstrates an interaction between the sensitivity of variables, with the climate and soil hydraulic properties being dominant under dry conditions but the leaf biochemical properties being most influential with wet soil. The sensitivity profile of the model changes from short to long timescales due to the cumulative effects of the fluxes of carbon, energy and water on the stand growth and canopy structure. Apart from a few specific cases, the model simulations are close to the values of the observations of atmospheric exchanges, tree growth, and soil carbon and water stock changes monitored over Douglas fir, European beech and pine forests of different ages. We also illustrate the capacity of the GO+ model to simulate the provision of key ecosystem services, such as the long-term storage of carbon in biomass and soil under various management and climate scenarios.
引用
收藏
页码:5973 / 6009
页数:37
相关论文
共 133 条
  • [91] Comprehensive comparison of gap-filling techniques for eddy covariance net carbon fluxes
    Moffat, Antje M.
    Papale, Dario
    Reichstein, Markus
    Hollinger, David Y.
    Richardson, Andrew D.
    Barr, Alan G.
    Beckstein, Clemens
    Braswell, Bobby H.
    Churkina, Galina
    Desai, Ankur R.
    Falge, Eva
    Gove, Jeffrey H.
    Heimann, Martin
    Hui, Dafeng
    Jarvis, Andrew J.
    Kattge, Jens
    Noormets, Asko
    Stauch, Vanessa J.
    [J]. AGRICULTURAL AND FOREST METEOROLOGY, 2007, 147 (3-4) : 209 - 232
  • [92] Moreaux V., 2012, THESIS
  • [93] Environmental control of land-atmosphere CO2 fluxes from temperate ecosystems: a statistical approach based on homogenized time series from five land-use types
    Moreaux, Virginie
    Longdoz, Bernard
    Berveiller, Daniel
    Delpierre, Nicolas
    Dufrene, Eric
    Bonnefond, Jean-Marc
    Chipeaux, Christophe
    Joffre, Richard
    Limousin, Jean-Marc
    Ourcival, Jean-Marc
    Klumpp, Katja
    Darsonville, Olivier
    Brut, Aurore
    Tallec, Tiphaine
    Ceschia, Eric
    Panthou, Geremy
    Loustau, Denis
    [J]. TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY, 2020, 72 (01): : 1 - 25
  • [94] Paired comparison of water, energy and carbon exchanges over two young maritime pine stands (Pinus pinaster Ait.): effects of thinning and weeding in the early stage of tree growth
    Moreaux, Virginie
    Lamaud, Eric
    Bosc, Alexandre
    Bonnefond, Jean-Marc
    Medlyn, Belinda E.
    Loustau, Denis
    [J]. TREE PHYSIOLOGY, 2011, 31 (09) : 903 - 921
  • [95] A review of rainfall interception modelling
    Muzylo, A.
    Llorens, P.
    Valente, F.
    Keizer, J. J.
    Domingo, F.
    Gash, J. H. C.
    [J]. JOURNAL OF HYDROLOGY, 2009, 370 (1-4) : 191 - 206
  • [96] Parameterisation of aerodynamic roughness over boreal, cool- and warm-temperate forests
    Nakai, Taro
    Sumida, Akihiro
    Daikoku, Ken'ichi
    Matsumoto, Kazuho
    van der Molen, Michiel K.
    Kodama, Yuji
    Kononov, Alexander V.
    Maximov, Trofim C.
    Dolman, Albertus J.
    Yabuki, Hironori
    Hara, Toshihiko
    Ohta, Takeshi
    [J]. AGRICULTURAL AND FOREST METEOROLOGY, 2008, 148 (12) : 1916 - 1925
  • [97] A vertically discretised canopy description for ORCHIDEE (SVN r2290) and the modifications to the energy, water and carbon fluxes
    Naudts, K.
    Ryder, J.
    McGrath, M. J.
    Otto, J.
    Chen, Y.
    Valade, A.
    Bellasen, V.
    Berhongaray, G.
    Boenisch, G.
    Campioli, M.
    Ghattas, J.
    De Groote, T.
    Haverd, V.
    Kattge, J.
    MacBean, N.
    Maignan, F.
    Merila, P.
    Penuelas, J.
    Peylin, P.
    Pinty, B.
    Pretzsch, H.
    Schulze, E. D.
    Solyga, D.
    Vuichard, N.
    Yan, Y.
    Luyssaert, S.
    [J]. GEOSCIENTIFIC MODEL DEVELOPMENT, 2015, 8 (07) : 2035 - 2065
  • [98] Europe's forest management did not mitigate climate warming
    Naudts, Kim
    Chen, Yiying
    McGrath, Matthew J.
    Ryder, James
    Valade, Aude
    Otto, Juliane
    Luyssaert, Sebastiaan
    [J]. SCIENCE, 2016, 351 (6273) : 597 - 600
  • [99] Forest summer albedo is sensitive to species and thinning: how should we account for this in Earth system models?
    Otto, J.
    Berveiller, D.
    Breon, F. -M.
    Delpierre, N.
    Geppert, G.
    Granier, A.
    Jans, W.
    Knohl, A.
    Kuusk, A.
    Longdoz, B.
    Moors, E.
    Mund, M.
    Pinty, B.
    Schelhaas, M. -J.
    Luyssaert, S.
    [J]. BIOGEOSCIENCES, 2014, 11 (08) : 2411 - 2427
  • [100] A Large and Persistent Carbon Sink in the World's Forests
    Pan, Yude
    Birdsey, Richard A.
    Fang, Jingyun
    Houghton, Richard
    Kauppi, Pekka E.
    Kurz, Werner A.
    Phillips, Oliver L.
    Shvidenko, Anatoly
    Lewis, Simon L.
    Canadell, Josep G.
    Ciais, Philippe
    Jackson, Robert B.
    Pacala, Stephen W.
    McGuire, A. David
    Piao, Shilong
    Rautiainen, Aapo
    Sitch, Stephen
    Hayes, Daniel
    [J]. SCIENCE, 2011, 333 (6045) : 988 - 993