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A physical-biological coupled ecosystem model for integrated aquaculture of bivalve and seaweed in sanggou bay

机译:Sanggou Bay综合养殖水产养殖的物理生物耦合生态系统模型

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摘要

To understand the biological process in an aquaculture dominant coastal system and to provide a tool for further aquaculture management, an ecosystem model has been implemented to study the aquaculture-environmental interaction and the carrying capacity for Sanggou Bay. The model coupled the pelagic system, kelp growth dynamics, oyster energetics, and population dynamics with hourly hydrodynamic and water quality data. The study area was divided into four boxes according to similarities in the hydrological environment and aquaculture layout. Scenario simulations were conducted with different combinations of oyster and kelp seeding densities to examine the environmental impacts and production under different aquaculture layouts. Results showed that the model could capture the main characteristics of observed environmental variables and culture organism growth. Increased seeding density of both oysters and kelp generally leads to increased production with diminished individual growth. Kelp aquaculture plays a leading role in the nutrient cycle in the bay, acting as a large reception tank during the rapid growth period. The model results indicate that there is still potential to increase production for both oyster and kelp in Sanggou bay. The current aquaculture practice seems to have the right balance of carrying capacity, management efforts, and other costs under the existing production procedures. The ecosystem model is a promising tool for further study with sustained observation effort and better boundary conditions.
机译:要了解水产养殖中沿海系统的生物过程,并为进一步的水产养殖管理提供工具,已经实施了生态系统模型,以研究水产养殖环境互动和桑格湾的承载力。该模型通过每小时流体动力学和水质数据耦合了Pelagic系统,海带增长动力学,牡蛎能量学和人口动态。根据水文环境和水产养殖布局的相似性,研究区分为四个盒子。使用不同组合的牡蛎和海带播种密度进行情景模拟,以检查不同水产养殖布局下的环境影响和生产。结果表明,该模型可以捕获观察到的环境变量和培养生物生长的主要特征。增加牡蛎和海带的播种密度通常导致产量增加,单独生长减少。海带水产养殖在海湾的营养周期中起着主导作用,在快速生长期间充当大型接收箱。模型结果表明,在桑田湾的牡蛎和海带仍有潜力增加产量。目前的水产养殖实践似乎具有承担能力,管理努力和现有生产程序下的其他成本的适当平衡。生态系统模型是一个有助于的工具,用于进一步研究持续的观察工作和更好的边界条件。

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