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Renewable hydropower generation as a co-benefit of balanced urban water portfolio management and flood risk mitigation

机译:可再生水力发电是平衡城市水管理和减轻洪灾风险的共同效益

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Understanding energy-water system interactions is critical to the effective management of urban infrastructure. This paper explores the potential for hydropower as a co-benefit in a novel operating regime for Sydney's main water reservoir (Warragamba Dam). Hydropower could be generated as part of storage level management in the reservoir aimed at introducing flood retention 'airspace' (to mitigate downstream flood risk from extreme rainfall) whilst augmenting the use of installed desalination capacity to maintain secure supplies of water. A purpose-built systems dynamics model provides the mechanism for evaluating and comparing future operating scenarios over a 25 year period (i.e. until 2040). Importantly, the findings reveal the potential for desalination plants, integrated into a populous city's water supply network, to satisfy a much broader planning agenda. Specifically, the study provides evidence that Sydney's interdependent goals of deferring capital intensive flood storage works, maintaining water security, better utilising existing desalination and hydropower assets, and increasing renewable energy generation can be achieved through applying systems thinking to a complex citywide water planning problem. The work also makes a valuable contribution to the energy-water nexus literature at the under-explored city-scale. (C) 2016 Elsevier Ltd. All rights reserved.
机译:了解能源-水系统的相互作用对于有效管理城市基础设施至关重要。本文探讨了在悉尼主要水库(Warragamba大坝)的新型运行方式中,水电作为一项协同效益的潜力。水力发电可以作为水库水位管理的一部分,旨在引入防洪“空域”(以减轻下游因极端降雨而引发的洪灾风险),同时增加使用已安装的淡化能力来维持稳定的水供应。专门构建的系统动力学模型提供了一种机制来评估和比较25年内(即直到2040年)未来的运行方案。重要的是,研究结果揭示了将海水淡化厂整合到人口稠密的城市供水网络中的潜力,以满足更广泛的规划议程。具体而言,该研究提供证据表明,通过将系统思想应用于复杂的全市水规划问题,可以实现悉尼的相互依存的目标,即推迟资本密集的洪水存储工程,维护水安全,更好地利用现有的海水淡化和水电资产以及增加可再生能源的发电量。这项工作还为尚未开发的城市规模的能源-水联系文献做出了宝贵的贡献。 (C)2016 Elsevier Ltd.保留所有权利。

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