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Answering the Supply-Demand Gap with Alternative Water Sources: Retrofitting Cities to Achieve Net Zero Urban Water

机译:用替代水源回答供需差距:改造城市以实现净零城市水

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Climate change, population growth, and deteriorating infrastructure portend a global urban water crisis in the coming decades. In cities facing extremely high water stress, conservation alone will not meet the challenge. Alternative water sources are needed to fill the supply-demand gap and reach a sustainable net zero urban water balance. Potential single water source solutions have been well researched, but the full integration of alternative water supplies (e.g., stormwater, rainwater, gray water, wastewater) across municipal systems for aggregate benefit has yet to be fully explored through planning and design. This research used public-private-academic partnering, water supply and demand calculations, speculative prototyping, and scenario planning and design to test the potential of transitioning a city with high water stress to a net zero urban water balance by 2050. Twenty prototypes were developed that integrated five alternative water sources across three land use scenarios in Tucson, Arizona, to replace imported water with local supplies. The article concludes that rather than managing urban water in single-purpose infrastructure, all water must be assessed as a one-resource system and part of a comprehensive urban design strategy across natural-social-technological dynamics. The article provides new forms and languages to layer, graft, integrate, and hybridize alternative water sources with existing city fabrics to achieve sustainable and adaptable net zero balance water systems.
机译:在未来几十年中,气候变化,人口增长率和恶化的基础设施促进了全球城市水危机。在面临极高的水分压力的城市中,单独保护不会符合挑战。需要替代水源来填补供需差距,达到可持续净零城市水平。潜在的单一水源解决方案已经得到了很好的研究,但通过规划和设计,跨城市各系统的替代水供应(例如,雨水,雨水,灰水,废水,废水)尚未完全探索。本研究使用了公私 - 私人学术合作,供水和需求计算,投机原型设计和情景规划和设计,以测试将城市过渡到高水力胁迫的潜力到2050年。发展了二十个原型原型在亚利桑那州图森三乡场景中综合了五个替代水源,以用当地用品代替进口水。本文得出结论,而不是在单一目的基础设施中管理城市水,所有水必须被评估为一个资源系统,以及跨自然社会技术动态的全面城市设计战略的一部分。该文章提供了与现有城市面料的层,移植,整合和杂交替代水源与现有城市面料的新形式和语言,以实现可持续和适应的净零水系统。

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