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Urban Water Supply Drought Security: A Comparative Analysis of Complimentary Centralised and Decentralised Storage Systems

机译:城市供水干旱安全:对互联和分散存储系统的比较分析

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In Australian urban water supply, large reservoirs are traditionally used to ensure adequate drought security. In recent years there has been a trend towards decentralised storage in the form of rainwater tanks harvesting rainfall from small roof catchments. In the urban setting the rainwater tank is usually too small to provide high reliability of supply. Rather the tank is used to compliment mains water supply. This study asks the question, under what conditions do urban rainwater tanks make the most significant contribution to urban water supply drought security? To answer this question in a way that maximizes insight, a Monte Carlo study is conducted involving 2400 combinations of climate variability and physical configuration of large reservoirs and urban rainwater tanks. The results are summarised using non-dimensional variables. It was found that rainwater tanks make the greatest contribution to drought security when the centralised storage is stressed (i.e., it experiences a high level of regulation and/or high streamflow variability) and when per-capita domestic demand is minimised. Moreover, the contribution of rainwater tanks to system drought security is more robust in the presence of climate change with declining rainfall.
机译:在澳大利亚城市供水中,大型水库传统上用于确保充足的干旱安全性。近年来,雨水坦克的形式是从小屋顶集水区收获降雨的形式进行分散储存的趋势。在城市设定雨水箱通常太小而无法提供高可靠性供应。相反,坦克用于恭维电源供水。这项研究问了这个问题,在城市雨水坦克是什么条件下对城市供水干旱安全最重要的贡献?为了以最大化洞察力最大化的方式回答这个问题,蒙特卡洛研究涉及2400个气候变异性和大型水库和城市雨水箱的物理配置的组合。结果总结了使用非维变量进行总结。有人发现,当集中式储存受到压力时,雨水箱对干旱安全性的最大贡献(即,它经历了高水平的调节和/或高流出变化),当人均需求最小化时。此外,雨水箱对系统干旱安全性的贡献在气候变化存在下更加强劲,降雨量下降。

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