Assessing the Connectivity of Urban Green Spaces for Enhanced Environmental Justice and Ecosystem Service Flow: A Study of Tehran Using Graph Theory and Least-Cost Analysis

Author:

Alavi Seyed Ali1,Esfandi Saeed23ORCID,Khavarian-Garmsir Amir Reza4ORCID,Tayebi Safiyeh56,Shamsipour Aliakbar7ORCID,Sharifi Ayyoob89ORCID

Affiliation:

1. Geographic Information System Analyst, Tehran Sewerage Company, Tehran 15875-5696, Iran

2. Center for Energy and Environmental Policy, Joseph R. Biden, Jr. School of Public Policy and Administration, University of Delaware, Newark, DE 19716, USA

3. Foundation for Renewable Energy and Environment (FREE), New York City, NY 10111, USA

4. Department of Geography and Urban Planning, Faculty of Geographical Sciences and Planning, University of Isfahan, Isfahan 8174673441, Iran

5. Department of Geography, Rutgers the State University of New Jersey, New Brunswick, NJ 08854, USA

6. Rutgers Global Health Institute, Rutgers the State University of New Jersey, New Brunswick, NJ 08901, USA

7. Faculty of Geography, University of Tehran, Tehran 1417853933, Iran

8. The IDEC Institute & Network for Education and Research on Peace and Sustainability (NERPS), Hiroshima University, 1-5-1 Kagamiyama, Higashi Hiroshima City 739-8529, Hiroshima, Japan

9. School of Architecture and Design, Lebanese American University, Beirut P.O. Box 13-5053, Lebanon

Abstract

This research aims to analyze the relationship between environmental justice and urban green space connectivity in Tehran, Iran. The evaluation of green space connectivity in this study is conducted through two distinct cost layers: one aimed at enhancing existing connections and another focused on establishing new green spaces. Key factors influencing connectivity, extracted from the relevant literature, were identified to facilitate this analysis. Employing graph theory and least-cost analysis, the results determined critical resistance factors, current connectivity and cost status, the varying degrees to which different districts benefit from green space ecosystem services, and the most effective routes for establishing green corridors. Research findings highlight significant disparities in access to these services, particularly in the underserved central districts of Tehran. Moreover, spatial analysis reveals a higher potential for enhancing east–west ecosystem service corridors due to the higher density of green hubs and lower costs in this orientation, while north–south connectivity faces more challenges. By exploring land use/land cover, and physical and socio-economic factors affecting urban green space connectivity, this study provides urban and environmental planners with a novel methodology and comprehensive insights for effective decision making, resource allocation, and land use planning.

Publisher

MDPI AG

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