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Bioeconomics fishery model in presence of infection: Sustainability and demand-price perspectives

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  • Bairagi, Nandadulal
  • Bhattacharya, Santanu
  • Auger, Pierre
  • Sarkar, Biswajit

Abstract

Intense harvesting and emerging infectious diseases are potential threats to global fishery. A proper management policy equipped with the scientific understanding of species interaction is a footstep in a long-term sustainable fishery. This work performs a qualitative study of bioeconomic management of a fishery in presence of some infection. The model narrates the rate equations of the healthy fish, infected fish, fishing effort and market price, where the fishing effort is considered to be dependent on the fish price and the fish price is regulated by the demand-supply theory of the open market. Routh–Hurwitz criterion is utilized for the local stability analysis whereas the high-dimensional Bendixson criterion is used for the global stability analysis. The one and two parameters bifurcation analysis explain various switching in equilibrium states, which includes infection-free, infected and harvesting-free states. The existence conditions of the bionomic equilibrium, where both the ecological and economic equilibrium exists, has been established. The harvested fish biomass is observed to be higher at the infection-free equilibrium state compare to the infected equilibrium state under increasing infection rate, however, the outcome is opposite under increasing environmental carrying capacity. Though, the total revenue is highest at the infection-free state when demand is high. An unintuitive result is that the infection persists at a higher level if demand decreases.

Suggested Citation

  • Bairagi, Nandadulal & Bhattacharya, Santanu & Auger, Pierre & Sarkar, Biswajit, 2021. "Bioeconomics fishery model in presence of infection: Sustainability and demand-price perspectives," Applied Mathematics and Computation, Elsevier, vol. 405(C).
  • Handle: RePEc:eee:apmaco:v:405:y:2021:i:c:s0096300321003155
    DOI: 10.1016/j.amc.2021.126225
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    References listed on IDEAS

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    1. Charles Raymond & Alfred Hugo & Monica Kung’aro, 2019. "Modeling Dynamics of Prey-Predator Fishery Model with Harvesting: A Bioeconomic Model," Journal of Applied Mathematics, Hindawi, vol. 2019, pages 1-13, June.
    2. Magill, Michael J P & Scheinkman, Jose A, 1979. "Stability of Regular Equilibria and the Correspondence Principle for Symmetric Variational Problems," International Economic Review, Department of Economics, University of Pennsylvania and Osaka University Institute of Social and Economic Research Association, vol. 20(2), pages 297-315, June.
    3. Belhouchette, Hatem & Louhichi, Kamel & Therond, Olivier & Mouratiadou, Ioanna & Wery, Jacques & Ittersum, Martin van & Flichman, Guillermo, 2011. "Assessing the impact of the Nitrate Directive on farming systems using a bio-economic modelling chain," Agricultural Systems, Elsevier, vol. 104(2), pages 135-145, February.
    4. Sana, Shib Sankar, 2012. "Optimal pricing strategy for livestock of fishery and poultry," Economic Modelling, Elsevier, vol. 29(4), pages 1024-1034.
    5. Datta, Jyotiska & Jana, Debaldev & Upadhyay, Ranjit Kumar, 2019. "Bifurcation and bio-economic analysis of a prey-generalist predator model with Holling type IV functional response and nonlinear age-selective prey harvesting," Chaos, Solitons & Fractals, Elsevier, vol. 122(C), pages 229-235.
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    Cited by:

    1. Jang, Geunsoo & Cho, Giphil, 2022. "Optimal harvest strategy based on a discrete age-structured model with monthly fishing effort for chub mackerel, Scomber japonicus, in South Korea," Applied Mathematics and Computation, Elsevier, vol. 425(C).
    2. Leishi Wang & Mingtao Li & Xin Pei & Juan Zhang, 2022. "Optimal Breeding Strategy for Livestock with a Dynamic Price," Mathematics, MDPI, vol. 10(10), pages 1-24, May.

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