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Suitability Analysis and Planning of Green Infrastructure in Montevideo, Uruguay

Author

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  • Agustina Apud

    (Faculty of Science, Engineering and Build Environment, Deakin University, Melbourne, VIC 3125, Australia)

  • Robert Faggian

    (Centre for Regional and Rural Futures, Faculty of Science, Engineering and Build Environment, Deakin University, Melbourne, VIC 3125, Australia)

  • Victor Sposito

    (Centre for Regional and Rural Futures, Faculty of Science, Engineering and Build Environment, Deakin University, Melbourne, VIC 3125, Australia)

  • Diego Martino

    (Facultad de Arquitectura, Universidad ORT Uruguay, 11100 Montevideo, Uruguay)

Abstract

Urban green infrastructure (UGI) has the potential to address a wide range of challenges associated with rapidly growing cities in a changing climate, while also providing multiple environmental, economic and social benefits. However, the location of projects is often determined according to a single potential benefit rather than a set of benefits. Furthermore, while UGI is recognized as a successful strategy to support resilience in many cities around the world, it has not been implemented in Uruguay. This study develops a model to identify priority areas in need of green infrastructure in Montevideo, Uruguay. The GIS-based model, termed the “Green Infrastructure Suitability Model” (GISM) is based on a multi-criteria decision analysis approach and is similar in structure to land suitability analysis. The model considers a range of socioeconomic, biophysical and environmental factors to prioritize the need for UGI across the case-study region. Resulting suitability maps identify areas for multifunctional UGI localization in places where benefits can be maximized. The GISM has potential as a tool to support future planning for multifunctional UGI.

Suggested Citation

  • Agustina Apud & Robert Faggian & Victor Sposito & Diego Martino, 2020. "Suitability Analysis and Planning of Green Infrastructure in Montevideo, Uruguay," Sustainability, MDPI, vol. 12(22), pages 1-18, November.
  • Handle: RePEc:gam:jsusta:v:12:y:2020:i:22:p:9683-:d:448025
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    References listed on IDEAS

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    1. Michail Fragkias & José Lobo & Deborah Strumsky & Karen C Seto, 2013. "Does Size Matter? Scaling of CO2 Emissions and U.S. Urban Areas," PLOS ONE, Public Library of Science, vol. 8(6), pages 1-8, June.
    2. Ian C. Mell, 2017. "Green infrastructure: reflections on past, present and future praxis," Landscape Research, Taylor & Francis Journals, vol. 42(2), pages 135-145, February.
    3. Chad Staddon & Sarah Ward & Laura Vito & Adriana Zuniga-Teran & Andrea K. Gerlak & Yolandi Schoeman & Aimee Hart & Giles Booth, 2018. "Contributions of green infrastructure to enhancing urban resilience," Environment Systems and Decisions, Springer, vol. 38(3), pages 330-338, September.
    4. Raymond, Christopher M. & Frantzeskaki, Niki & Kabisch, Nadja & Berry, Pam & Breil, Margaretha & Nita, Mihai Razvan & Geneletti, Davide & Calfapietra, Carlo, 2017. "A framework for assessing and implementing the co-benefits of nature-based solutions in urban areas," Environmental Science & Policy, Elsevier, vol. 77(C), pages 15-24.
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    Cited by:

    1. Fernando Castillo-Cabrera & Thilo Wellmann & Dagmar Haase, 2020. "Urban Green Fabric Analysis Promoting Sustainable Planning in Guatemala City," Land, MDPI, vol. 10(1), pages 1-26, December.

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