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水-能源关系在供水方面及其对水-能源综合管理的影响。

The water-energy nexus at water supply and its implications on the integrated water and energy management.

机构信息

Department of Civil and Environmental Engineering, University of New Hampshire, United States.

CDM Smith, Boston, MA, United States.

出版信息

Sci Total Environ. 2018 Sep 15;636:1257-1267. doi: 10.1016/j.scitotenv.2018.04.408. Epub 2018 May 9.

Abstract

Water and energy are highly interdependent in the modern world, and hence, it is important to understand their constantly changing and nonlinear interconnections to inform the integrated management of water and energy. In this study, a hydrologic model, a water systems model, and an energy model were developed and integrated into a system dynamics modeling framework. This framework was then applied to a water supply system in the northeast US to capture its water-energy interactions under a set of future population, climate, and system operation scenarios. A hydrologic model was first used to simulate the system's hydrologic inflows and outflows under temperature and precipitation changes on a weekly-basis. A water systems model that combines the hydrologic model and management rules (e.g., water release and transfer) was then developed to dynamically simulate the system's water storage and water head. Outputs from the water systems model were used in the energy model to estimate hydropower generation. It was found that critical water-energy synergies and tradeoffs exist, and there is a possibility for integrated water and energy management to achieve better outcomes. This analysis also shows the importance of a holistic understanding of the systems as a whole, which would allow utility managers to make proactive long-term management decisions. The modeling framework is generalizable to other water supply systems with hydropower generation capacities to inform the integrated management of water and energy resources.

摘要

水和能源在现代社会中高度相互依存,因此,了解它们不断变化和非线性的相互关系对于水资源和能源的综合管理至关重要。在本研究中,我们开发了一个水文模型、一个水系统模型和一个能源模型,并将它们集成到一个系统动力学建模框架中。然后,我们将该框架应用于美国东北部的一个供水系统,以在一组未来的人口、气候和系统运行情景下捕捉其水-能源相互作用。首先,我们使用一个水文模型来模拟系统在温度和降水变化下的每周水文流入和流出。然后,我们开发了一个结合水文模型和管理规则(例如,放水和调水)的水系统模型,以动态模拟系统的储水和水头。水系统模型的输出用于能源模型来估算水力发电。研究结果表明,存在关键的水-能源协同作用和权衡,并且有可能实现水资源和能源的综合管理以达到更好的效果。这种分析还表明了整体理解系统的重要性,这将使公用事业管理者能够做出积极的长期管理决策。该建模框架具有通用性,可以应用于具有水力发电能力的其他供水系统,以实现水资源和能源的综合管理。

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