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Marine Reserves with Fisheries Management Regulations Aimed at People to Hit Biological Targets.

机译:针对人们达到生物目标的《渔业管理条例》海洋保护区。

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摘要

Consideration of both biological and human-use dynamics in coupled social-ecological systems is essential for the success of interventions such as marine reserves. As purely human institutions, marine reserves have no direct effects on ecological systems. Consequently, the success of a marine reserve depends on managers` ability to alter human behavior in the direction and magnitude that supports reserve objectives. Further, a marine reserve is just one component in a larger coupled social-ecological system. The social, economic, political, and biological landscape all determine the social acceptability of a reserve, conflicts that arise, how the reserve interacts with existing fisheries management, accuracy of reserve monitoring, and whether the reserve is ultimately able to meet conservation and fishery enhancement goals. Just as the social-ecological landscape is critical at all stages for marine reserve, from initial establishment to maintenance, the reserve in turn interacts with biological and human use dynamics beyond its borders. Those interactions can lead to the failure of a reserve to meet management goals, or compromise management goals outside the reserve. I use a bio-economic model of a fishery in a spatially patchy environment to demonstrate how the pre-reserve fisheries management strategy determines the pattern of fishing effort displacement once the reserve is established, and discuss the social, political, and biological consequences of different patterns for the reserve and the fishery. Using a stochastic bio-economic model, I demonstrate how biological and human use connectivity can confound the accurate detection of reserve effects by violating assumptions in the quasi-experimental framework. Finally, I examine data on recreational fishing site selection to investigate changes in response to the announcement of enforcement of a marine reserve in the Gulf of California, Mexico. I generate a scale of fines that would fully or partially protect the reserve, providing a data-driven way for managers to balance biological and socio-economic goals. I suggest that natural resource managers consider human use dynamics with the same frequency, rigor, and tools as they do biological stocks.
机译:社会生态系统耦合对生物和人类利用动力学的考虑对于海洋保护等干预措施的成功至关重要。作为纯粹的人类机构,海洋保护区对生态系统没有直接影响。因此,海洋保护区的成功取决于管理者在支持保护区目标的方向和规模上改变人类行为的能力。此外,海洋保护区只是更大的耦合社会生态系统中的一个组成部分。社会,经济,政治和生物景观都决定了保护区的社会可接受性,发生的冲突,保护区与现有渔业管理之间的相互作用,保护区监测的准确性以及保护区最终能否满足保护和渔业需求目标。正如社会生态景观对于海洋保护区从最初建立到维护的各个阶段都是至关重要的一样,保护区又会与其边界之外的生物和人类利用动态相互作用。这些相互作用可能导致储备金无法满足管理目标,或损害储备金以外的管理目标。我使用空间上零散的环境中的渔业生物经济模型来说明保护区建立后,保护区之前的渔业管理策略如何确定捕捞努力转移的模式,并讨论不同保护区的社会,政治和生物学后果保护区和渔业的模式。通过使用随机的生物经济模型,我证明了生物和人类使用的连通性如何通过违反准实验框架中的假设来混淆对储量影响的准确检测。最后,我研究了有关休闲钓鱼场所选择的数据,以调查因应墨西哥湾加州海岸保护区的宣布而发生的变化。我产生了可以全部或部分保护储备金的罚款额度,为经理们提供了一种以数据为依据的方式来平衡生物和社会经济目标。我建议自然资源管理者考虑人类使用动态时应采用与生物种群相同的频率,严格性和工具。

著录项

  • 作者

    Fujitani, Marie.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Agriculture Fisheries and Aquaculture.;Environmental Sciences.;Biology Zoology.;Agriculture Wildlife Management.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:37

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