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Agent-based modeling for simulating the decentralization of urban water infrastructure systems

机译:基于Agent的模型,用于模拟城市水基础设施系统的分散化

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Urban water infrastructure systems, including drinking water, wastewater, and stormwater, should be designed to efficiently use water and energy resources. Current design paradigms typically neglect the interconnection among these systems; water, wastewater, and stormwater are treated at centralized facilities, and water services are distributed within a municipality through pipe networks. Due to water shortages and limited budgets, water utilities may encourage individual households to adopt water reuse, water conservation, and lot-level stormwater treatment technologies, which may produce a decentralized water service system. Transitioning from a centralized to a decentralized approach within urban water infrastructure systems will change demands and affect the performance of the existing infrastructure and the use of energy and water resources. To enable exploration of the impacts of decentralization on the sustainability and resilience of urban water infrastructure systems, a Complex Adaptive Systems (CAS) approach is developed here. This modeling framework characterizes the various feedback loops, dynamic interactions, and emergent phenomena that result from the interactions of decentralized and centralized components of the water infrastructure systems. Specifically, rainwater harvesting is explored as a decentralization technology, which reduces stormwater service demands and drinking water demands on the centralized infrastructure systems. An agent-based modeling approach is used to simulate technology adoption of individual consumers in response to water shortages and is coupled with water and energy utilization models. The framework provides insight to the interconnections and interactions between the consumers, water supply and delivery system and the effect of these interactions on water and energy use and sustainability; infrastructure system design; and system resilience, as a system transitions from a centralized to a decentralized layout.
机译:城市水基础设施系统,包括饮用水,废水和雨水,应设计为有效利用水和能源。当前的设计范例通常忽略了这些系统之间的互连。水,废水和雨水在集中设施进行处理,供水服务通过管网在市政内部分配。由于缺水和预算有限,自来水公司可能会鼓励单个家庭采用中水回用,节水和地段级雨水处理技术,这可能会产生分散式供水服务系统。在城市水基础设施系统中从集中式过渡到分散式方法将改变需求,并影响现有基础设施的性能以及能源和水资源的使用。为了探索权力下放对城市水基础设施系统的可持续性和复原力的影响,此处开发了一种复杂的自适应系统(CAS)方法。该建模框架描述了由于水基础设施系统的分散和集中组件之间的相互作用而导致的各种反馈回路,动态相互作用和突发现象。具体而言,雨水收集被视为一种分散技术,可减少集中式基础设施系统上的雨水服务需求和饮用水需求。基于代理的建模方法用于模拟个人消费者针对缺水的技术采用情况,并与水和能源利用模型结合使用。该框架提供了对消费者,供水和供水系统之间的相互联系和相互作用以及这些相互作用对水​​和能源使用及可持续性的影响的洞察力;基础设施系统设计;和系统弹性,因为系统从集中式布局过渡到分散式布局。

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