在有争议的牡蛎渔场管理中采用协作建模的共识解决方案流程的两个应用实例

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Elizabeth W. North, Michael J. Wilberg, Jeff Blair, Lisa Wainger, Jeffrey C. Cornwell, Robert Jones, Chris Hayes, Rasika Gawde, Raleigh Robert Hood, Taylor Goelz, Troy Hartley, Marvin M. Mace, Memo Diriker, Niquinn Fowler, Brian Polkinghorn
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引用次数: 0

摘要

在世界范围内,提高牡蛎种群数量是为了实现各种目标,包括支持粮食生产、地方经济、水质、沿海栖息地、生物多样性和文化遗产。虽然改善牡蛎种群的策略有很多,但由于社区团体之间在实施哪些策略、应将工作重点放在哪里以及应为每种策略分配多少资金等问题上长期存在冲突,导致改善工作受挫。本文的目的是比较两种参与方法,这两种方法通过使用 "共识解决方案 "流程和协作模拟建模,为美国马里兰州的牡蛎种群和牡蛎产业提出了多效益增殖建议。这些建议分别于 2018 年和 2021 年由 OysterFutures 工作组和马里兰州牡蛎咨询委员会(OAC)提出。这两项工作的显著相似之处在于 "共识解决方案 "流程的基本原则:中立调解、75% 的协议阈值、管理机构领导出席会议、科学支持团队与社区团体代表合作创建管理情景模式、为代表们提供大量相互倾听的机会,以及一个结构化的共识建设流程,用于生成想法、评级和批准管理方案。为确保受影响最大的用户群体具有有意义的代表性,在这两个过程中,成员组成的目标是 60% 来自行业,40% 来自宣传、机构和学术团体。两个流程之间的重要差异包括流程的推动力(研究计划与立法授权流程)、小组规模、会议结构,以及 COVID-19 大流行对 OAC 成员互动能力的明显而普遍的影响。尽管存在分歧和挑战,但两个小组都能就一揽子建议达成一致,这表明以共识为基础的协作建模过程为在科学依据和社区支持下协调跨部门自然资源决策提供了可行的途径。此外,合作建模还带来了 "打破神话 "的发现,使参与者能够重新评估和调整他们对人类-牡蛎耦合系统如何应对管理变化的思考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two applications of the Consensus Solutions process with collaborative modeling for management of a contentious oyster fishery
Worldwide, enhancement of oyster populations is undertaken to achieve a variety of goals including support of food production, local economies, water quality, coastal habitat, biodiversity, and cultural heritage. Although numerous strategies for improving oyster stocks exist, enhancement efforts can be thwarted by long-standing conflict among community groups about which strategies to implement, where efforts should be focused, and how much funding should be allocated to each strategy. The objective of this paper is to compare two engagement approaches that resulted in recommendations for multi-benefit enhancements to oyster populations and the oyster industry in Maryland, U.S.A., using the Consensus Solutions process with collaborative simulation modeling. These recommendations were put forward by the OysterFutures Workgroup in 2018 and the Maryland Oyster Advisory Commission (OAC) in 2021. Notable similarities between the efforts were the basic principles of the Consensus Solutions process: neutral facilitation, a 75% agreement threshold, the presence of management agency leadership at the meetings, a scientific support team that created a management scenario model in collaboration with community group representatives, numerous opportunities for representatives to listen to each other, and a structured consensus building process for idea generation, rating, and approval of management options. To ensure meaningful representation by the most affected user groups, the goal for membership composition was 60% from industry and 40% from advocacy, agency, and academic groups in both processes. Important differences between the processes included the impetus for the process (a research program versus a legislatively-mandated process), the size of the groups, the structure of the meetings, and the clear and pervasive impact of the COVID-19 pandemic on the ability of OAC members to interact. Despite differences and challenges, both groups were able to agree on a package of recommendations, indicating that consensus-based processes with collaborative modeling offer viable paths toward coordinated cross-sector natural resource decisions with scientific basis and community support. In addition, collaborative modeling resulted in ‘myth busting’ findings that allowed participants to reassess and realign their thinking about how the coupled human-oyster system would respond to management changes.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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