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Integrated modelling software platform development for effective use of ecosystem models

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  • Larocque, Guy R.
  • Bhatti, Jagtar
  • Arsenault, André

Abstract

Ecological modelling is increasing in importance to facilitate the development of sustainable management planning of terrestrial ecosystems and integrate social and economic objectives. As models have become more complex and include many state variables, modelling software platforms have been developed to support development projects. However, few modelling software platforms integrate software components or applications to facilitate the interpretation of simulation results. Recent advances in computing technology and the increasing availability of free or open-source software allow the efficient integration of different software applications to support modelling development efforts and analysis of simulation results. The application AMSIMOD (“Application for the Management of SImulation MODels”), which was developed to manage the ZELIG-CFS gap model, is introduced as an example of an integrated modelling software platform to facilitate and analyze simulation results with the Stand Visualization System and the Quantum GIS geographic information system. Future advancements in the development of this type of modelling platform are discussed. Typical frameworks for model management and analytical applications should have the capacity to manage several models and simulation results at different spatial scales and the ability to generate management scenarios. Also, end users should have access to various types of reporting tools and analytical and numerical processing utilities.

Suggested Citation

  • Larocque, Guy R. & Bhatti, Jagtar & Arsenault, André, 2014. "Integrated modelling software platform development for effective use of ecosystem models," Ecological Modelling, Elsevier, vol. 288(C), pages 195-202.
  • Handle: RePEc:eee:ecomod:v:288:y:2014:i:c:p:195-202
    DOI: 10.1016/j.ecolmodel.2014.06.011
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    1. Seidl, Rupert & Rammer, Werner & Scheller, Robert M. & Spies, Thomas A., 2012. "An individual-based process model to simulate landscape-scale forest ecosystem dynamics," Ecological Modelling, Elsevier, vol. 231(C), pages 87-100.
    2. Nelson Minar & Rogert Burkhart & Chris Langton & Manor Askenazi, 1996. "The Swarm Simulation System: A Toolkit for Building Multi-Agent Simulations," Working Papers 96-06-042, Santa Fe Institute.
    3. Čerepnalkoski, Darko & Taškova, Katerina & Todorovski, Ljupčo & Atanasova, Nataša & Džeroski, Sašo, 2012. "The influence of parameter fitting methods on model structure selection in automated modeling of aquatic ecosystems," Ecological Modelling, Elsevier, vol. 245(C), pages 136-165.
    4. Steenbeek, Jeroen & Coll, Marta & Gurney, Leigh & Mélin, Frédéric & Hoepffner, Nicolas & Buszowski, Joe & Christensen, Villy, 2013. "Bridging the gap between ecosystem modeling tools and geographic information systems: Driving a food web model with external spatial–temporal data," Ecological Modelling, Elsevier, vol. 263(C), pages 139-151.
    5. Cariboni, J. & Gatelli, D. & Liska, R. & Saltelli, A., 2007. "The role of sensitivity analysis in ecological modelling," Ecological Modelling, Elsevier, vol. 203(1), pages 167-182.
    6. Yang, Jian & He, Hong S. & Shifley, Stephen R. & Thompson, Frank R. & Zhang, Yangjian, 2011. "An innovative computer design for modeling forest landscape change in very large spatial extents with fine resolutions," Ecological Modelling, Elsevier, vol. 222(15), pages 2623-2630.
    7. Larocque, Guy R. & Archambault, Louis & Delisle, Claude, 2011. "Development of the gap model ZELIG-CFS to predict the dynamics of North American mixed forest types with complex structures," Ecological Modelling, Elsevier, vol. 222(14), pages 2570-2583.
    8. Lindim, C. & Pinho, J.L. & Vieira, J.M.P., 2011. "Analysis of spatial and temporal patterns in a large reservoir using water quality and hydrodynamic modeling," Ecological Modelling, Elsevier, vol. 222(14), pages 2485-2494.
    9. Holguin-Gonzalez, Javier E. & Boets, Pieter & Alvarado, Andres & Cisneros, Felipe & Carrasco, María C. & Wyseure, Guido & Nopens, Ingmar & Goethals, Peter L.M., 2013. "Integrating hydraulic, physicochemical and ecological models to assess the effectiveness of water quality management strategies for the River Cuenca in Ecuador," Ecological Modelling, Elsevier, vol. 254(C), pages 1-14.
    10. Larocque, Guy R. & Bhatti, Jagtar S. & Boutin, Robert & Chertov, Oleg, 2008. "Uncertainty analysis in carbon cycle models of forest ecosystems: Research needs and development of a theoretical framework to estimate error propagation," Ecological Modelling, Elsevier, vol. 219(3), pages 400-412.
    11. Wang, Szu-Hua & Huang, Shu-Li & Budd, William W., 2012. "Integrated ecosystem model for simulating land use allocation," Ecological Modelling, Elsevier, vol. 227(C), pages 46-55.
    12. Johnston, John M. & McGarvey, Daniel J. & Barber, M. Craig & Laniak, Gerry & Babendreier, Justin & Parmar, Rajbir & Wolfe, Kurt & Kraemer, Stephen R. & Cyterski, Michael & Knightes, Chris & Rashleigh,, 2011. "An integrated modeling framework for performing environmental assessments: Application to ecosystem services in the Albemarle-Pamlico basins (NC and VA, USA)," Ecological Modelling, Elsevier, vol. 222(14), pages 2471-2484.
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    1. Varga, M. & Csukas, B., 2017. "Generation of extensible ecosystem models from a network structure and from locally executable programs," Ecological Modelling, Elsevier, vol. 364(C), pages 25-41.
    2. Olosutean Horea, 2015. "Methods for Modeling Ecosystem Services: A Review," Management of Sustainable Development, Sciendo, vol. 7(1), pages 5-12, June.

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