A 6·6 ha (66 000 m2) regeneration site, commonly referred to as Luneside East, is to be turned from a run down, economically under-achieving area of Lancaster, UK, into a new, distinctive, vibrant, sustainable quarter of the city. As a result several aspects of water planning for 350 new homes and 8000 m2 of workspace needed to be considered before any infrastructure investment was undertaken. This included assessment of the future capacity requirements (i.e. inflows and outflows) for water infrastructure (i.e. mains water supply, wastewater disposal, rainwater storage and stormwater disposal) much of which will be located underground. This paper looks at the implications of various water management strategies on the Luneside East site (e.g. water-efficient appliances, greywater recycling and rainwater harvesting) in line with current policy measures that focus on technology changes alone (e.g. the code for sustainable homes). Based on these findings this paper outlines some basic implications for technological resilience discussed in the context of four ‘world views’ – that is, the urban futures scenarios considered in this special issue. Conclusions are drawn as to how far this can take engineers, planners and developers in understanding and planning for resilient water infrastructure within a development like Luneside East.
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March 2012
Research Article|
March 01 2012
Urban futures and the code for sustainable homes
Dexter V. L. Hunt, MEng, PhD;
Dexter V. L. Hunt, MEng, PhD
Research Fellow, School of Civil Engineering, College of Engineering and Physical Sciences, University of Birmingham, Birmingham, UK
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D. Rachel Lombardi, PhD;
D. Rachel Lombardi, PhD
Research Fellow, School of Civil Engineering, College of Engineering and Physical Sciences, University of Birmingham, Birmingham, UK
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Raziyeh Farmani, PhD;
Raziyeh Farmani, PhD
Senior Research Fellow, Centre for Water Systems, College of Engineering, Mathematics and Physical Sciences, University of Exeter, Exeter, UK
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Ian Jefferson, BEng, DIS, FGS;
Ian Jefferson, BEng, DIS, FGS
Senior Lecturer, School of Civil Engineering, College of Engineering and Physical Sciences, University of Birmingham, Birmingham, UK
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Fayyaz A. Memon, MSc, PhD, CEng, CEnv, DIC, MCIWEM, FHEA;
Fayyaz A. Memon, MSc, PhD, CEng, CEnv, DIC, MCIWEM, FHEA
Senior Lecturer, Centre for Water Systems, College of Engineering, Mathematics and Physical Sciences, University of Exeter, Exeter, UK
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David Butler, MSc, PhD, DIC, CEng, CEnv, FICE, FCIWEM, FHEA;
David Butler, MSc, PhD, DIC, CEng, CEnv, FICE, FCIWEM, FHEA
Professor of Water Engineering, Centre for Water Systems, College of Engineering, Mathematics and Physical Sciences, University of Exeter, Exeter, UK
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Chris D. F. Rogers, Eur Ing, BSc, PhD, CEng, MICE, MIHT
Chris D. F. Rogers, Eur Ing, BSc, PhD, CEng, MICE, MIHT
Professor of Geotechnical Engineering, School of Civil Engineering, College of Engineering and Physical Sciences, University of Birmingham, Birmingham, UK
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Publisher: Emerald Publishing
Received:
June 18 2011
Accepted:
November 16 2011
Online ISSN: 1751-7680
Print ISSN: 1478-4629
ICE Publishing: All rights reserved
2012
Proceedings of the Institution of Civil Engineers - Engineering Sustainability (2012) 165 (1): 37–58.
Article history
Received:
June 18 2011
Accepted:
November 16 2011
Citation
Hunt DVL, Lombardi DR, Farmani R, Jefferson I, Memon FA, Butler D, Rogers CDF (2012), "Urban futures and the code for sustainable homes". Proceedings of the Institution of Civil Engineers - Engineering Sustainability, Vol. 165 No. 1 pp. 37–58, doi: https://doi.org/10.1680/ensu.2012.165.1.37
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