Completed Engineering Climate, Earth & Environment

Delivering and evaluating multiple flood risk benefits

In plain English

AI plain-English summary

Flood-prone cities have a stack of promising ideas for managing stormwater—but no clear way to actually build them or prove they are worth the money. This project tackles a practical bottleneck. Decades of research have produced a long menu of flood-risk measures: permeable pavements, rain gardens, green roofs, swales, and other features that soak up water while also cooling streets, cleaning runoff, and adding green space. Yet city planners, developers, and infrastructure agencies cannot easily decide which combinations work best, how to install them in existing streets, or how to compare their full costs and benefits against traditional concrete drains. The gap is not in invention but in delivery and evaluation. If the research succeeds, it will give cities a systematic way to retrofit flood resilience into existing neighbourhoods and embed it into new developments from the start. That could shift urban flood management from a single-purpose, reactive expense—digging bigger pipes after a disaster—to a multi-benefit investment that also improves air quality, reduces heat stress, and makes streets more liveable. The work is applied and practical: it aims to change how planners, engineers, and developers actually make decisions about the fabric of cities.

View original technical description
Summary New strategies for managing urban flood risk are required, necessitating radical changes in the ways cities are managed, planned and developed. Previous research has identified multiple options and measures for future urban flood risk management that align with more general targets for water centric, sustainable communities. However, it remains unclear how these options and measures can be: (1) delivered in practice, and; (2) comprehensively evaluated in terms of their benefits and costs. Recognising this, the project proposed here will develop novel ways of driving new, resilient urban forms and fabrics through delivering measures to manage flood events sustainably while enhancing urban life; providing scope for radical solutions under new build; and, realising possibilities for improving existing performance through retrofit and urban renewal.

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Researchers

Chris Kilsby (Co-Investigator)Colin Thorne (Principal Investigator)Dabo Guan (Co-Investigator)Heather Haynes (Co-Investigator)Jessica Lamond (Co-Investigator)Leonard Smith (Co-Investigator)Nigel Wright (Co-Investigator)Richard Fenner (Co-Investigator)Sue White (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

Urban Flood Resilience in an Uncertain Future
Integrating issues of scale and benefits into a novel planning framework for nature-based solutions to urban flooding
Adapting Cities: Interoperable solutions for improved flood resilience
Flood Resilient Bridge Modelling and Design
Improved techno-economic evaluation of Blue Green Solutions for managing flood risk to infrastructure

Original classification

Research Grant

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