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Keeping the ‘Great’ in the Great Barrier Reef: large-scale governance of the Great Barrier Reef Marine Park

机译:在大堡礁中保持“伟大”:大堡礁海洋公园的大规模治理

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As part of an international collaboration to compare large-scale commons, we used the span class="italic"Social-Ecological Systems Meta-Analysis Database/span (SESMAD) to systematically map out attributes of and changes in the Great Barrier Reef Marine Park (GBRMP) in Australia. We focus on eight design principles from common-pool resource (CPR) theory and other key social-ecological systems governance variables, and explore to what extent they help explain the social and ecological outcomes of park management through time. Our analysis showed that commercial fisheries management and the re-zoning of the GBRMP in 2004 led to improvements in ecological condition of the reef, particularly fisheries. These boundary and rights changes were supported by effective monitoring, sanctioning and conflict resolution. Moderate biophysical connectivity was also important for improved outcomes. However, our analysis also highlighted that continued challenges to improved ecological health in terms of coral cover and biodiversity can be explained by fuzzy boundaries between land and sea, and the significance of external drivers to even large-scale social-ecological systems (SES). While ecological and institutional fit in the marine SES was high, this was not the case when considering the coastal SES. Nested governance arrangements become even more important at this larger scale. To our knowledge, our paper provides the first analysis linking the re-zoning of the GBRMP to CPR and SES theory. We discuss important challenges to coding large-scale systems for meta-analysis.
机译:作为比较大型公地的国际合作的一部分,我们使用了 class =“ italic”>社会生态系统元分析数据库(SESMAD)系统地绘制了大草原的属性和变化澳大利亚的堡礁海洋公园(GBRMP)。我们从公共资源(CPR)理论和其他关键的社会生态系统治理变量着眼于八项设计原则,并探讨它们在多大程度上有助于随着时间的推移来解释公园管理的社会和生态成果。我们的分析表明,商业渔业管理和GBRMP的重新分区于2004年导致了礁石特别是渔业的生态状况得到改善。这些边界和权利的变化得到有效监测,制裁和冲突解决的支持。适度的生物物理连接对于改善结果也很重要。但是,我们的分析还强调,陆地和海洋之间的模糊界限以及外部驱动因素甚至对大规模社会生态系统(SES)的重要性都可以解释在改善珊瑚覆盖和生物多样性方面继续面临的挑战。尽管海洋SES的生态和制度适应性很高,但考虑沿海SES却并非如此。在更大的规模上,嵌套的治理安排变得更加重要。据我们所知,本文提供了将GBRMP的重新分区与CPR和SES理论联系起来的第一个分析。我们讨论了对大型系统进行元分析编码的重要挑战。

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