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Evaluation of water footprint of urban renewal projects. Case study in Seville, Andalusia

Identifiers
URI: http://hdl.handle.net/20.500.12251/3041
View/Open: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85132725197&doi=10.1016%2fj.watres.2022.118715&partnerID=40&md5=da73d314efe8087e3bcc97054cf2e73a
ISSN: 0043-1354
DOI: 10.1016/j.watres.2022.118715
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Author
Ruiz Pérez, María Rocío; Alba Rodríguez, María Desiree; Marrero Meléndez, Madelyn
Date
2022
Subject/s

Huella hídrica

Regeneración urbana

Jardín

Diseño arquitectónico

Sevilla

Sostenibilidad

Unesco Subject/s

3305.15 Ingeniería Hidráulica

6201.02 Jardines y Parques

3308.06 Regeneración del Agua

3308.10 Tecnología de Aguas Residuales

3305.37 Planificación Urbana

Abstract

This publication presents a methodology for the evaluation of the water footprint of urban renewal projects. The indirect water footprint is obtained by adding together the embodied or virtual water of the materials incorporated in the 12-month project, while the direct footprint is mainly due to the green areas and rainwater collection system over its 40-year life span. The methodology, originally defined for the agricultural sector, is adapted to an urban system that includes gardens and sustainable urban drainage systems. In an innovative way, the present work analyses the amortisation of the indirect water footprint of the construction products by improvements in the city water cycle. The project involves street renewal with water-sensitive criteria, with five green areas, and road and pavement construction. The methodology identifies changes in garden designs, soil drainage, and rainwater-collecting systems in terms of blue, green, and grey water footprints. Five scenarios of a project in Seville, Spain are studied. The indirect water footprint of the project is 2.6 times higher than that in a standard project, but, due to annual savings of 65% in its direct water footprint, the breakeven point is reached in the 10th year. © 2022 The Author(s)

This publication presents a methodology for the evaluation of the water footprint of urban renewal projects. The indirect water footprint is obtained by adding together the embodied or virtual water of the materials incorporated in the 12-month project, while the direct footprint is mainly due to the green areas and rainwater collection system over its 40-year life span. The methodology, originally defined for the agricultural sector, is adapted to an urban system that includes gardens and sustainable urban drainage systems. In an innovative way, the present work analyses the amortisation of the indirect water footprint of the construction products by improvements in the city water cycle. The project involves street renewal with water-sensitive criteria, with five green areas, and road and pavement construction. The methodology identifies changes in garden designs, soil drainage, and rainwater-collecting systems in terms of blue, green, and grey water footprints. Five scenarios of a project in Seville, Spain are studied. The indirect water footprint of the project is 2.6 times higher than that in a standard project, but, due to annual savings of 65% in its direct water footprint, the breakeven point is reached in the 10th year. © 2022 The Author(s)

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