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A coupled simulation architecture for agent-based/geohydrological modelling with NetLogo and MODFLOW

机译:使用NetLogo和MODFLOW的基于代理/地理水文建模的耦合仿真架构

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摘要

The modelling of social-ecological systems can provide useful insights into the interaction of social and environmental processes. However, quantitative social-ecological models should acknowledge the complexity and uncertainty of both underlying subsystems. For example, the agent-based models which are increasingly popular for groundwater studies can be made more realistic by incorporating geohydrological processes. Conversely, groundwater models can benefit from an agent-based depiction of the decision-making and feedbacks which drive groundwater exploitation. From this perspective, this work introduces a Python-based software architecture which couples the NetLogo agent-based platform with the MODFLOW/SEAWAT geohydrological modelling environment. This approach enables users to design agent-based models in NetLogo's user-friendly platform, while benefiting from the full capabilities of MODFLOW/SEAWAT. This workflow is illustrated for a simplified application of Aquifer Thermal Energy Storage (ATES).
机译:社会生态系统的建模可以为社会与环境过程之间的相互作用提供有用的见解。但是,定量的社会生态模型应该承认两个基本子系统的复杂性和不确定性。例如,通过结合地理水文过程,可以使在地下水研究中越​​来越流行的基于主体的模型更加现实。相反,地下水模型可以从基于主体的决策描述和反馈中受益,从而推动地下水开发。从这个角度出发,这项工作引入了一个基于Python的软件体系结构,该体系结构将基于NetLogo代理的平台与MODFLOW / SEAWAT地理水文建模环境相结合。这种方法使用户能够在NetLogo的用户友好平台中设计基于代理的模型,同时受益于MODFLOW / SEAWAT的全部功能。说明了此工作流程,以简化含水层热能存储(ATES)的应用。

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