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Yield- and biomass-per-recruit analysis for rotational fisheries, with an application to the Atlantic sea scallop (Placopecten magellanicus)

机译:轮作渔业的单产产量和生物量分析,并应用于大西洋扇贝(Placopecten magellanicus)

摘要

A general model for yield-per-recruit analysis of rotational (periodic) fisheries is developed and applied to the sea scallop (Placopecten magellanicus) fishery of the northwest Atlantic. Rotational fishing slightly increases both yield- and biomass-per-recruit for sea scallops at FMAX. These quantities decline less quickly when fishing mortality is increased beyond FMAX than when fishing is at a constant rate. The improvement in biomass-per-recruit appears to be nearly independent of the selectivity pattern but increased size-at-entry can reduce or eliminate the yield-per-recruit advantage of rotation. Area closures and rotational fishing can cause difficulties with the use of standard spatially averaged fishing mortality metrics and reference points. The concept of temporally averaged fishing mortality is introduced as one that is more appropriate for sedentary resources when fishing mortality varies in time and space.
机译:建立了轮流(周期性)渔业按需求量分析的通用模型,并将其应用于西北大西洋的海扇贝(Placopecten magellanicus)渔业。在FMAX上,轮流捕鱼略有增加海扇贝的每产量和生物量。当捕捞死亡率增加到超过FMAX时,这些数量下降的速度不如以恒定速度捕捞时下降的快。每招生生物量的改善似乎几乎与选择性模式无关,但是增加的入料口大小会减少或消除旋转的每招生产量的优势。禁区和轮流捕鱼可能会导致使用标准的空间平均捕鱼死亡率指标和参考点造成困难。引入时间平均捕鱼死亡率的概念,是一种在捕鱼死亡率随时间和空间变化时更适合久坐的资源的概念。

著录项

  • 作者

    Hart Deborah R.;

  • 作者单位
  • 年度 2003
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  • 原文格式 PDF
  • 正文语种 en
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