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A system dynamics model for the management of the Manila clam, Ruditapes philippinarum (Adams and Reeve, 1850) in the Bay of Arcachon (France)

Author

Listed:
  • Bald, J.
  • Sinquin, A.
  • Borja, A.
  • Caill-Milly, N.
  • Duclercq, B.
  • Dang, C.
  • de Montaudouin, X.

Abstract

The Manila clam Ruditapes philippinarum (Adams and Reeve, 1850) is one of the mollusc species that, driven mainly by the shellfish market industry, has extended throughout the world, far beyond the limits of its original habitat. The Manila clam was introduced into France for aquaculture purposes, between 1972 and 1975. In France, this venerid culture became increasingly widespread and, since 1988, this species has colonised most of the embayments along the French Atlantic coast. In 2004, this development resulted in a fishery of ca. 520t in Arcachon Bay.

Suggested Citation

  • Bald, J. & Sinquin, A. & Borja, A. & Caill-Milly, N. & Duclercq, B. & Dang, C. & de Montaudouin, X., 2009. "A system dynamics model for the management of the Manila clam, Ruditapes philippinarum (Adams and Reeve, 1850) in the Bay of Arcachon (France)," Ecological Modelling, Elsevier, vol. 220(21), pages 2828-2837.
  • Handle: RePEc:eee:ecomod:v:220:y:2009:i:21:p:2828-2837
    DOI: 10.1016/j.ecolmodel.2009.03.031
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    References listed on IDEAS

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    1. Freire, Juan & García-Allut, Antonio, 2000. "Socioeconomic and biological causes of management failures in European artisanal fisheries: the case of Galicia (NW Spain)," Marine Policy, Elsevier, vol. 24(5), pages 375-384, September.
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    Cited by:

    1. Caill-Milly, N. & Garmendia, J. Bald & D'Amico, F. & Guyader, O. & Dang, C. & Bru, N., 2022. "Adapting a dynamic system model using life traits and local fishery knowledge — Application to a population of exploited marine bivalves (Ruditapes philippinarum) in a mesotidal coastal lagoon," Ecological Modelling, Elsevier, vol. 470(C).
    2. Vincenot, Christian Ernest & Giannino, Francesco & Rietkerk, Max & Moriya, Kazuyuki & Mazzoleni, Stefano, 2011. "Theoretical considerations on the combined use of System Dynamics and individual-based modeling in ecology," Ecological Modelling, Elsevier, vol. 222(1), pages 210-218.
    3. Ibarra, Diego A. & Fennel, Katja & Cullen, John J., 2014. "Coupling 3-D Eulerian bio-physics (ROMS) with individual-based shellfish ecophysiology (SHELL-E): A hybrid model for carrying capacity and environmental impacts of bivalve aquaculture," Ecological Modelling, Elsevier, vol. 273(C), pages 63-78.
    4. Bala, B.K. & Arshad, Fatimah M. & Alias, E.F. & Sidique, S.F. & Noh, K.M. & Rowshon, M.K. & Islam, Q.M.M. & Islam, M.M., 2014. "Sustainable exploitation of hilsa fish (Tenualosa ilisha) population in Bangladesh: Modeling and policy implications," Ecological Modelling, Elsevier, vol. 283(C), pages 19-30.
    5. Jiapeng Qu & Zelin Liu & Zhenggang Guo & Yikang Li & Huakun Zhou, 2021. "A System Dynamics Model for Assessing the Efficacy of Lethal Control for Sustainable Management of Ochotona curzoniae on Tibetan Plateau," Sustainability, MDPI, vol. 13(2), pages 1-11, January.
    6. Konrad, Renata A. & Saeed, Khalid & Kammer-Kerwick, Matt & Busaranuvong, Palawat & Khumwang, Wai, 2023. "“Fish-y” banks: Using system dynamics to evaluate policy interventions for reducing labor exploitation in the seafood industry," Socio-Economic Planning Sciences, Elsevier, vol. 90(C).

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