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Urban water management in cities: historical, current and future regimes

Water Science & Technology · 2009 · Vol. 59(5) · pp. 847–855
Rebekah Ruth BrownNina KeathTony Wong

Abstract

Drawing from three phases of a social research programme between 2002 and 2008, this paper proposes a framework for underpinning the development of urban water transitions policy and city-scale benchmarking at the macro scale. Through detailed historical, contemporary and futures research involving Australian cities, a transitions framework is proposed, presenting a typology of six city states, namely the 'Water Supply City', the 'Sewered City', the 'Drained City', the 'Waterways City', the 'Water Cycle City', and the 'Water Sensitive City'. This framework recognises the temporal, ideological and technological contexts that cities transition through when moving towards sustainable urban water conditions. The aim of this research is to assist urban water managers with understanding the scope of the hydro-social contracts currently operating across cities in order to determine the capacity development and cultural reform initiatives needed to effectively expedite the transition to more sustainable water management and ultimately to Water Sensitive Cities. One of the values of this framework is that it can be used by strategists and policy makers as a heuristic device and/or the basis for a future city state benchmarking tool. From a research perspective it can be an underpinning framework for future work on transitions policy research.

Water resources management and optimizationWater Governance and InfrastructureUrban Stormwater Management SolutionsUnderpinningEnvironmental planningIntegrated water resources managementTypologyFutures contractBenchmarkingUrban planningScope (computer science)Water supplyWater resources

MeSH terms

City PlanningSewageTime FactorsWaterWater SupplyWater Purification
Citations
700
FWCI
33.30
field-weighted impact
References
16
Percentile
100%
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Cited by
The water sensitive city: principles for practice
Water Science & Technology · 2009 · 527 citations
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