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Using a fisheries ecosystem model with a water quality model to explore trophic and habitat impacts on a fisheries stock: A case study of the blue crab population in the Chesapeake Bay

机译:使用具有水质模型的渔业生态系统模型来探讨营养和栖息地对渔业种群的影响:切萨皮克湾蓝蟹种群的案例研究

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Recent calls for the development of ecosystem-based fisheries management compel the development of resourcemanagement tools and linkages between existing fisheriesmanagement tools and other resource tools to enable assessment and management of multiple impacts on fisheries resources. In this paper, we describe the use of the Chesapeake Bay Fisheries Ecosystem Model (CBFEM), developed using the Ecopath with Ecosim (EwE) software, and the Chesapeake BayWater Quality Model (WQM) to demonstrate how linkages between available modeling tools can be used to inform ecosystem-based natural resource management. The CBFEM was developed to provide strategic ecosystem information in support of fisheries management. The WQM was developed to assess impacts on water quality. The CBFEM was indirectly coupled with the WQM to assess the effects of water quality and submerged aquatic vegetation (SAV) on blue crabs. The output from two WQM scenarios (1985–1994), a baseline scenario representing actual nutrient inputs and another with reduced inputs based on a tributary management strategy,was incorporated into the CBFEM. The results suggested that blue crab biomass could be enhanced under management strategies (reduced nutrient input) when the effective search rate of blue crab young-of-the-year’s (YOY’s) predators or the vulnerability of blue crab YOY to its predators was adjusted by SAV. Such model linkages are important for incorporating physical and biological components of ecosystems in order to explore ecosystem-based fisheries management options.
机译:最近呼吁发展基于生态系统的渔业管理,这迫使开发资源管理工具,并使现有渔业管理工具与其他资源工具之间建立联系,从而能够评估和管理对渔业资源的多重影响。在本文中,我们描述了使用通过Ecopath with Ecosim(EwE)软件开发的切萨皮克湾渔业生态系统模型(CBFEM)和切萨皮克湾水质模型(WQM)的使用,以演示如何使用可用的建模工具之间的联系告知基于生态系统的自然资源管理。开发CBFEM是为了提供战略性生态系统信息以支持渔业管理。 WQM旨在评估对水质的影响。 CBFEM与WQM间接结合以评估水质和水下水生植物(SAV)对蓝蟹的影响。 CBFEM将两个WQM情景(1985-1994)的输出,一个代表实际营养输入的基线情景,另一个基于支流管理策略减少了输入的情景,输出到CBFEM中。结果表明,通过调整蓝蟹年幼捕食者的有效搜索率或蓝蟹YOY对其捕食者的脆弱性,可以通过管理策略(减少养分输入)来提高蓝蟹的生物量。 SAV。这种模型联系对于纳入生态系统的物理和生物组成部分以探索基于生态系统的渔业管理选择而言非常重要。

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