Please use this identifier to cite or link to this item:https://hdl.handle.net/20.500.12259/91051
Type of publication: Straipsnis Clarivate Analytics Web of Science ar/ir Scopus / Article in Clarivate Analytics Web of Science or / and Scopus (S1)
Field of Science: Miškotyra / Forestry (A004)
Author(s): Orazio, Christophe;Cordero-Montoya, Rebeca;Régolini, Margot;Borges, José G;Garcia-Gonzalo, Jordi;Barreiro, Susana;Botequim, Brigite;Marques, Susete;Sedmák, Róbert;Smreček, Róbert;Brodrechtová, Yvonne;Brukas, Vilis;Chirici, Gherardo;Marchetti, Marco;Moshammer, Ralf;Biber, Peter;Corrigan, Edwin;Eriksson, Ljusk Ol;Favero, Matteo;Galev, Emil;Hengeveld, Geerten M;Kavaliauskas, Marius;Mozgeris, Gintautas;Navrátil, Rudolf;Nieuwenhuis, Maarten;Paligorov, Ivan;Pettenella, Davide;Stanislovaitis, Andrius;Tomé, Margarida;Trubins, Renats;Tuček, Ján;Vizzarri, Matteo;Wallin, Ida;Pretzsch, Hans;Sallnäs, Ola
Title: Decision Support Tools and Strategies to Simulate Forest Landscape Evolutions Integrating Forest Owner Behaviour: A Review from the Case Studies of the European Project, INTEGRAL
Is part of: Sustainability. Basel : MDPI AG, Vol. 9, iss. 4 (2017)
Extent: p. 599-630
Date: 2017
Keywords: decision support system;forest landscape;indicators;sustainability;wood resource;risk evaluation;storm;fire;diseases;forest management;forest owner behaviour
Abstract: For forest sustainability and vulnerability assessment, the landscape scale is considered to be more and more relevant as the stand level approaches its known limitations. This review, which describes the main forest landscape simulation tools used in the 20 European case studies of the European project “Future-oriented integrated management of European forest landscapes” (INTEGRAL), gives an update on existing decision support tools to run landscape simulation from Mediterranean to boreal ecosystems. The main growth models and software available in Europe are described, and the strengths and weaknesses of different approaches are discussed. Trades-offs between input efforts and output are illustrated. Recommendations for the selection of a forest landscape simulator are given. The paper concludes by describing the need to have tools that are able to cope with climate change and the need to build more robust indicators for assessment of forest landscape sustainability and vulnerability
Internet: http://www.mdpi.com/2071-1050/9/4/599/htm
Affiliation(s): Vytauto Didžiojo universitetas
Žemės ūkio akademija
Appears in Collections:Universiteto mokslo publikacijos / University Research Publications

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