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Understanding urban water performance at the city-region scale using an urban water metabolism evaluation framework

机译:使用城市水代谢评估框架了解城市区域范围内的城市水绩效

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Water sensitive interventions are being promoted to reduce the adverse impacts of urban development on natural water cycles. However it is currently difficult to know the best strategy for their implementation because current and desired urban water performance is not well quantified. This is particularly at the city-region scale, which is important for strategic urban planning. This work aimed to fill this gap by quantifying the water performance of urban systems within city-regions using 'urban water metabolism' evaluation, to inform decisions about water sensitive interventions. To do this we adapted an existing evaluation framework with new methods. In particular, we used land use data for defining system boundaries, and for estimating natural hydrological flows. The criteria for gauging the water performance were water efficiency (in terms of water extracted externally) and hydrological performance (how much natural hydrological flows have changed relative to a nominated pre-urbanised state). We compared these performance criteria for urban systems within three Australian city-regions (South East Queensland, Melbourne and Perth metropolitan areas), under current conditions, and after implementation of example water sensitive interventions (demand management, rainwater/stormwater harvesting, wastewater recycling and increasing perviousness). The respective water efficiencies were found to be 79, 90 and 133 kL/capita/yr. In relation to hydrological performance, stormwater runoff relative to pre-urbanised flows was of most note, estimated to be 2-, 6- and 3- fold, respectively. The estimated performance benefits from water sensitive interventions suggested different priorities for each region, and that combined implementation of a range of interventions may be necessary to make substantive gains in performance. We concluded that the framework is suited to initial screening of the type and scale of water sensitive interventions needed to achieve desired water performance objectives. (C) 2018 Elsevier Ltd. All rights reserved.
机译:正在推广对水敏感的干预措施,以减少城市发展对自然水循环的不利影响。但是,由于目前和期望的城市水绩效还没有得到很好的量化,因此目前很难知道实施这些战略的最佳策略。这尤其在城市区域范围内,这对于战略性城市规划非常重要。这项工作旨在通过使用“城市水新陈代谢”评估来量化城市区域内城市系统的水绩效,从而为有关水敏感干预措施的决策提供依据,从而填补这一空白。为此,我们采用新方法对现有评估框架进行了调整。特别是,我们使用土地利用数据来定义系统边界,并估算自然水文流量。衡量水性能的标准是水效率(就外部抽取的水而言)和水文性能(相对于指定的预先城市化状态,自然水文流量发生了多少变化)。我们比较了在当前条件下以及实施示例水敏感型干预措施(需求管理,雨水/雨水收集,废水回收和水处理)后,澳大利亚三个城市区域(东南昆士兰州,墨尔本和珀斯市区)内城市系统的这些绩效标准。渗透性增加)。发现各自的水效率为79、90和133 kL /人均/年。在水文性能方面,相对于城市化前的流量,雨水径流最为明显,估计分别为2倍,6倍和3倍。对水敏感的干预措施所产生的绩效收益估计值表明,每个区域的优先重点都不同,为使绩效取得实质性增长,可能有必要联合实施一系列干预措施。我们得出的结论是,该框架适合初步筛选实现所需水绩效目标所需的水敏感型干预措施的类型和规模。 (C)2018 Elsevier Ltd.保留所有权利。

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