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Coupling Agent-Based and Groundwater Modeling to Explore Demand Management Strategies for Shared Resources

机译:基于Agent和地下水的耦合模型探索共享资源的需求管理策略

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Municipal water demands in growing population centers in the arid southwest US are typically met through increased groundwater withdrawals. Hydro-climatic uncertainties attributed to climate change and land use conversions may also alter demands and impact the replenishment of groundwater supply. Groundwater aquifers are not necessarily confined within municipal and management boundaries, and multiple diverse agencies may manage a shared resource in a decentralized approach, based on individual concerns and resources. The interactions among water managers, consumers, and the environment influence the performance of local management strategies and regional groundwater resources. This research couples an agent-based modeling (ABM) framework and a groundwater model to analyze the effects of different management approaches on shared groundwater resources. The ABM captures the dynamic interactions between household-level consumers and policy makers to simulate water demands under climate change and population growth uncertainties. The groundwater model is used to analyze the relative effects of management approaches on reducing demands and replenishing groundwater resources. The framework is applied for municipalities located in the Verde River Basin, Arizona that withdraw groundwater from the Verde Formation-Basin Fill-Carbonate aquifer system. Insights gained through this simulation study can be used to guide groundwater policy-making under changing hydro-climatic scenarios for a long-term planning horizon.
机译:美国西南干旱地区不断增长的人口中心的市政用水需求通常通过增加地下水抽取量来满足。归因于气候变化和土地利用转换的水文气候不确定性也可能改变需求并影响地下水供应的补充。地下水含水层并不一定局限于市政和管理界线,多个不同的机构可以根据个人关注和资源,以分散的方式管理共享资源。水资源管理者,消费者和环境之间的相互作用影响着当地管理策略和区域地下水资源的绩效。这项研究结合了基于代理的建模(ABM)框架和地下水模型,以分析不同管理方法对共享地下水资源的影响。 ABM捕获了家庭级消费者与决策者之间的动态互动,以模拟气候变化和人口增长不确定性下的需水量。地下水模型用于分析管理方法对减少需求和补充地下水资源的相对影响。该框架适用于位于亚利桑那州佛得河流域的城市,这些城市从佛得地层-盆地填充-碳酸盐含水层系统中抽取地下水。通过该模拟研究获得的见解可用于指导长期规划视野中变化的水文气候情景下的地下水政策制定。

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