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A review of EU bio-economic models for fisheries: The value of a diversity of models

Author

Listed:
  • Prellezo, Raúl
  • Accadia, Paolo
  • Andersen, Jesper L.
  • Andersen, Bo S.
  • Buisman, Erik
  • Little, Alyson
  • Nielsen, J. Rasmus
  • Poos, Jan Jaap
  • Powell, Jeff
  • Röckmann, Christine

Abstract

The lessons learned from a review of thirteen existing European bio-economic models used in the evaluation of EU policies are presented. How these models compare and differ in terms of their biological and economic components, the integration between the components, which indicators are selected and how they are used, are described and analysed. The article concludes that the multitude of construction differences reflects the necessity of adapting the modelling approach to answer different questions. Since real life questions in fisheries are so diverse, answering them requires a diversity of models.

Suggested Citation

  • Prellezo, Raúl & Accadia, Paolo & Andersen, Jesper L. & Andersen, Bo S. & Buisman, Erik & Little, Alyson & Nielsen, J. Rasmus & Poos, Jan Jaap & Powell, Jeff & Röckmann, Christine, 2012. "A review of EU bio-economic models for fisheries: The value of a diversity of models," Marine Policy, Elsevier, vol. 36(2), pages 423-431.
  • Handle: RePEc:eee:marpol:v:36:y:2012:i:2:p:423-431
    DOI: 10.1016/j.marpol.2011.08.003
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    Cited by:

    1. Rossetto, Marisa & Bitetto, Isabella & Spedicato, Maria Teresa & Lembo, Giuseppe & Gambino, Monica & Accadia, Paolo & Melià, Paco, 2015. "Multi-criteria decision-making for fisheries management: A case study of Mediterranean demersal fisheries," Marine Policy, Elsevier, vol. 53(C), pages 83-93.
    2. Ing-Marie Gren & Kerstin Holmgren & Willem Goedkoop, 2023. "Fishing motives and economic effects of climate change: an application on Arctic char in northern Sweden," Journal of Bioeconomics, Springer, vol. 25(3), pages 203-223, December.
    3. Torbjörn Jansson & Staffan Waldo, 2022. "Managing Marine Mammals and Fisheries: A Calibrated Programming Model for the Seal-Fishery Interaction in Sweden," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 81(3), pages 501-530, March.
    4. Hans Frost & Peder Andersen & Ayoe Hoff, 2013. "Management of Complex Fisheries: Lessons Learned from a Simulation Model," Canadian Journal of Agricultural Economics/Revue canadienne d'agroeconomie, Canadian Agricultural Economics Society/Societe canadienne d'agroeconomie, vol. 61(2), pages 283-307, June.
    5. Riquelme, Andres & Guney, Selin, 2017. "Application of a Generalized Additive Model to the Chilean Hake population in a Bio-economic Context," 2017 Annual Meeting, February 4-7, 2017, Mobile, Alabama 252831, Southern Agricultural Economics Association.
    6. José-María Da-Rocha & Raul Prellezo & Jaume Sempere & Luis Taboada Antelo, 2017. "A dynamic economic equilibrium model for the economic assessment of the fishery stock-rebuilding policies," Serie documentos de trabajo del Centro de Estudios Económicos 2017-01, El Colegio de México, Centro de Estudios Económicos.
    7. Rosaria Felicita Sabatella & Paolo Accadia & Maria Cozzolino & Dario Pinello & Monica Gambino & Loretta Malvarosa & Evelina Carmen Sabatella, 2020. "Impatto socioeconomico sulla piccola pesca dell?emergenza Covid-19," QUADERNI DI ECONOMIA DEL LAVORO, FrancoAngeli Editore, vol. 2020(111), pages 131-149.
    8. Federico Di Maio & Michele Luca Geraci & Danilo Scannella & Tommaso Russo & Fabio Fiorentino, 2022. "Evaluation of the Economic Performance of Coastal Trawling off the Southern Coast of Sicily (Central Mediterranean Sea)," Sustainability, MDPI, vol. 14(8), pages 1-15, April.

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