首页> 外文期刊>Marine policy >Estimating MSY and MEY in multi-species and multi-fleet fisheries, consequences and limits: an application to the Bay of Biscay mixed fishery
【24h】

Estimating MSY and MEY in multi-species and multi-fleet fisheries, consequences and limits: an application to the Bay of Biscay mixed fishery

机译:估计多物种和多船队渔业的MSY和MEY,后果和局限性:在比斯开湾混合渔业中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

Most worldwide fish stocks are overexploited, and so exploited beyond the Maximum Sustainable Yield (MSY) and the Maximum Economic Yield (MEY). Not exploiting fisheries resources at MSY or MEY leads to the loss of production and rents from the fisheries. A large part of the EU fisheries are managed based on single species stock assessments; however, in reality, most species are caught together with other species and by different fleets. In multi-species and multi-fleet fisheries, single species assessments, and consequently MSY and MEY reference points, are often not valid, and so the catch recommendations. In this paper it is investigated the MSY and MEY estimation in multi-species and multi-fleet fisheries in comparison to single species assessments. Analyses are applied to the Bay of Biscay demersal fishery using the 1AM bio-economic model. The impact of exploiting at MSY and MEY on the optimal effort allocation between fleets with different exploitation patterns and economic structures is analyzed. When accounting for the multi-species nature of the fishery, MSY landings are 0.4% to 2.7% lower than the single species simulations estimates. When accounting for the multi-fleet nature of the fishery, MSY landings are 27.2% to 30.2% higher than the single-fleet estimates. When considering the multi-fleet characteristics, MEY landings are 6.6% higher and profits are 66.5% higher than in the single-fleet simulation. Optimal effort at MEY is lower than at MSY, but when accounting for multi-fleet the optimal effort decreases for some fleets while increases for gillnetters. The results also provide an estimation of the profits at MEY (or costs of not being at MEY). Profits can be then up to 10.7 times larger than the current profits (256 million Euros compared to the current 24 million Euros).
机译:世界上大多数鱼类资源被过度开发,因此被利用的范围超过了最大可持续产量(MSY)和最大经济产量(MEY)。不利用MSY或MEY的渔业资源会导致渔业生产和租金的损失。欧盟渔业的很大一部分是根据单一物种种群评估进行管理的;但是,实际上,大多数物种是与其他物种一起被不同的船队捕获的。在多物种和多群渔业中,单物种评估以及因此的MSY和MEY参考点通常是无效的,因此建议采取捕捞措施。在本文中,与单物种评估相比,本文研究了多物种和多船队渔业的MSY和MEY估计。使用1AM生物经济模型将分析应用于比斯开湾深海渔业。分析了在MSY和MEY开采对不同开采模式和经济结构的船队之间最佳努力分配的影响。考虑到渔业的多物种性质,MSY的上岸量比单物种模拟的估计值低0.4%至2.7%。考虑到渔业的多船队性质,MSY的上岸量比单船队的估计数高27.2%至30.2%。考虑多舰队特征时,与单舰队模拟相比,MEY着陆点高出6.6%,利润提高了66.5%。 MEY的最佳工作量低于MSY,但是当考虑多舰队时,某些舰队的最佳工作量减少而刺网者的最佳工作量则增加。结果还提供了以MEY(或不是MEY的成本)估算的利润。然后,利润可以高达当前利润的10.7倍(2.56亿欧元,而目前为2400万欧元)。

著录项

  • 来源
    《Marine policy》 |2013年第7期|64-74|共11页
  • 作者单位

    IFREMER, UMR AMURE, Unite d'Economie Maritime, BP 70, F-29280 Plouzane Cedex, France;

    IFREMER, UMR AMURE, Unite d'Economie Maritime, BP 70, F-29280 Plouzane Cedex, France;

    IFREMER, UMR AMURE, Unite d'Economie Maritime, BP 70, F-29280 Plouzane Cedex, France;

    IFREMER, Unite Sciences et Technologies Halieutiques, BP 70, F-29280 Plouzane Cedex, France;

    IFREMER, Unite Sciences et Technologies Halieutiques, BP 70, F-29280 Plouzane Cedex, France;

    IFREMER, UMR AMURE, Unite d'Economie Maritime, BP 70, F-29280 Plouzane Cedex, France;

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

    MSY; MEY; multi-species; multi-fleet; fisheries; bio-economic model;

    机译:MSY;MEY;多物种多车队渔业;生物经济模型;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号