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Advantages of integrated and sustainability based assessment for metabolism based strategic planning of urban water systems

机译:基于代谢的城市水系统战略规划的综合和可持续性评估的优势

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摘要

Despite providing water-related services as the primary purpose of urban water system (UWS), all relevant activities require capital investments and operational expenditures, consume resources (e.g. materials and chemicals), and may increase negative environmental impacts (e.g. contaminant discharge, emissions to water and air). Performance assessment of such a metabolic system may require developing a holistic approach which encompasses various system elements and criteria. This paper analyses the impact of integration of UWS components on the metabolism based performance assessment for future planning using a number of intervention strategies. It also explores the importance of sustainability based criteria in the assessment of long-term planning. Two assessment approaches analysed here are: (1) planning for only water supply system (WSS) as a part of the UWS and (2) planning for an integrated UWS including potable water, stormwater, wastewater and water recycling. WaterMet2 model is used to simulate metabolic type processes in the UWS and calculate quantitative performance indicators. The analysis is demonstrated on the problem of strategic level planning of a real-world UWS to where optional intervention strategies are applied. The resulting performance is assessed using the multiple criteria of both conventional and sustainability type; and optional intervention strategies are then ranked using the Compromise Programming method. The results obtained show that the high ranked intervention strategies in the integrated UWS are those supporting both water supply and stormwater/wastewater subsystems (e.g. rainwater harvesting and greywater recycling schemes) whilst these strategies are ranked low in the WSS and those targeting improvement of water supply components only (e.g. rehabilitation of clean water pipes and addition of new water resources) are preferred instead. Results also demonstrate that both conventional and sustainability type performance indicators are necessary for strategic planning in the UWS.
机译:尽管提供与水有关的服务是城市供水系统(UWS)的主要目的,但所有相关活动都需要资本投资和运营支出,消耗资源(例如材料和化学药品),并可能增加负面的环境影响(例如污染物排放,污染物排放)。水和空气)。对这种代谢系统的性能评估可能需要开发一种涵盖各种系统要素和标准的整体方法。本文分析了UWS组件集成对基于代谢的绩效评估的影响,该评估用于使用多种干预策略的未来计划。它还探讨了在评估长期计划中基于可持续性的标准的重要性。此处分析的两种评估方法是:(1)仅作为UWS一部分的供水系统(WSS)规划,以及(2)规划包括饮用水,雨水,废水和水循环利用的综合UWS。 WaterMet2模型用于模拟UWS中的代谢类型过程并计算定量性能指标。该分析是针对在现实世界中进行可选干预策略的UWS的战略级计划问题进行的。使用常规和可持续性类型的多个标准评估最终的性能;然后使用“折衷编程”方法对可选干预策略进行排名。所获得的结果表明,综合供水系统中的高级干预策略是那些既支持供水又支持雨水/废水子系统的策略(例如,雨水收集和中水回用计划),而这些策略在WSS中排名较低,而那些目标是改善供水而是仅选择组件(例如,清洁净水管道和增加新的水资源)。结果还表明,常规和可持续性绩效指标对于UWS的战略规划都是必需的。

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