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Aquaculture, pollution and fishery - dynamics of marine industrial interactions

机译:水产养殖,污染与渔业 - 海洋工业互动的动态

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摘要

We model bioeconomic interrelations between a commercial fishery and an aquaculture industry by using a dynamical systems theory approach. The biomass follows a logistic growth where the pollution emerging from aquaculture is accounted for by means of a retardation term. We investigate the existence and stability of the equilibrium states of this model as a function of the growth-retardation parameter and find that a necessary (but not sufficient) condition for stability is low and moderate values of the emission-remediation ratio. Three intervals of the growth-retardation parameter are identified in this regime of the emission-remediation ratio. The regime of low and negligible influence of the pollution on the biomass evolution gives rise to the existence of an asymptotically stable equilibrium state characterized by a finite biomass and a finite effort in the fishery. In the same regime we identify two unstable equilibrium states of which the former one is characterized by no effort in the fishery, whereas the latter one is characterized by no biomass and no effort. When the growth retardation parameter exceeds a certain threshold, the fishery becomes unprofitable and the equilibrium state characterized by no effort in the fishery becomes asymptotically stable. By a further increase in this parameter above a higher threshold value, also the biomass is wiped out and the equilibrium state characterized by no biomass and no effort becomes asymptotically stable.
机译:我们使用动态系统理论方法模型商业渔业和水产养殖业之间的生物经济相互关系。生物量遵循物流增长,借助延迟术语占水产养殖的污染。我们调查该模型的均衡状态作为生长延迟参数的函数的存在和稳定性,发现稳定性的必要(但不足)条件是发射修复比的低和中等值。在发射修复率的该制度中鉴定了生长延迟参数的三个间隔。污染对生物质演化的低和可忽略不计的影响产生了渐近稳定的平衡状态,其特征是有限生物质和渔业的有限努力。在相同的制度中,我们确定前一个不稳定的均衡状态,前者的特征在于渔业的努力,而后者的特征是没有生物量,没有努力。当生长延迟参数超过某个阈值时,渔业变得无利可图,并且渔业在渔业中没有努力的平衡状态变得渐近稳定。通过该参数的进一步增加,高于更高的阈值,也擦除生物质,其特征在于没有生物质并且不努力变得渐近稳定的平衡状态。

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  • 来源
    《Ecological Complexity》 |2020年第8期|100853.1-100853.25|共25页
  • 作者单位

    Univ Tromso Sch Business & Econ Campus Harstad POB 1063 N-9480 Harstad Norway;

    Univ Tyumen XBio Inst 6 Volodarskogo St Tyumen 625003 Russia|Russian Acad Sci VA Trapeznikov Inst Control Sci 65 Profsoyuznaya St Moscow 117997 Russia;

    Nord Univ Business Sch POB 1490 N-8049 Bodo Norway;

    Norwegian Univ Life Sci Fac Sci & Technol POB 5003 N-1432 As Norway;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aquaculture; Fishery dynamics; Equilibrium states;

    机译:水产养殖;渔业动态;均衡状态;

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