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Exploring Lake Victoria ecosystem functioning using the Atlantis modeling framework

机译:使用亚特兰蒂斯建模框架探索维多利亚湖的生态系统功能

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Lake Victoria has experienced human induced pressures such as overfishing, introduction of alien species, increased eutrophication and climate change impacts. However, there is limited understanding of the system dynamics, major processes, drivers and responses to the changes. To address this challenge, we developed the first end-to-end whole ecosystem model (Atlantis) for the lake. The model is spatially resolved into 12 unique dynamic areas based on depth, species composition, physical-chemical characteristics and fisheries management zones. A total of 38 functional groups constitute the biological model. Four fishing fleets with different targeting options are simulated. Reliability of the model is confirmed by the good fit of simulations output to observational data sets. Herein, we describe the evolution of the biophysical system, illustrating how it responded to the aforementioned induced perturbations since 1958. The constructed virtual Lake Victoria ecosystem model provides a platform for exploring the impact of management interventions before actual implementation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:维多利亚湖经历了人为压力,例如过度捕捞,引进外来物种,富营养化增加和气候变化影响。但是,对系统动力学,主要流程,驱动程序和对更改的响应的了解有限。为了应对这一挑战,我们为湖泊开发了第一个端到端的整个生态系统模型(亚特兰蒂斯)。根据深度,物种组成,物理化学特征和渔业管理区,该模型在空间上分解为12个独特的动态区域。总共38个官能团构成了生物学模型。模拟了具有不同目标选项的四个捕鱼船队。通过将模拟输出很好地拟合到观测数据集,可以确认模型的可靠性。在这里,我们描述了生物物理系统的演化,说明了它如何对1958年以来的上述扰动做出反应。构建的虚拟维多利亚湖生态系统模型提供了一个平台,可在实际实施之前探索管理干预措施的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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