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March 6, 2026Discover Sustainability0 citationsOpen Access

Assessing urban water security in Awash River Basin, Addis Ababa, and its surrounding towns using Integrated Urban Water S ecurity Index

ALAbebe LegassWater and Land Resource CentreATAlamirew TenaEthiopian Civil Service UniversitySGSolomon Gebreyohannis GebrehiwotJustus-Liebig-Universität Gießen

Key Points

  • The aim is to evaluate urban water security in Addis Ababa and nearby towns using a comprehensive index framework.
  • Utilized Integrated Urban Water Security Index (IUWSI) and Analytic Hierarchy Process (AHP)
  • Conducted household surveys in 11 sub-cities in Addis Ababa and collected stakeholder perspectives
  • Incorporated secondary data from authorities and relevant literature
  • Applied statistical analyses, including chi-square and regression
  • Used ArcGIS for spatial mapping of key water quality parameters
  • Statistical analyses revealed significant correlations between water availability, location, and affordability
  • 79.2% of Addis Ababa respondents reported water shortages, with 90-100% downstream
  • Downstream turbidity was 30 NTU and E. coli levels were at 50 CFU/100 mL
  • Projected IUWSI could drop to 1.6 or rise to 3.9 by 2050 under different scenarios
  • Most vulnerable sub-cities were Bole (2.1 IUWSI) and Akaki Kality (2.2 IUWSI)

Abstract

This study assesses the urban water security of Addis Ababa and surrounding cities, within the Awash River Basin (ARB). Using the Integrated Urban Water Security Index (IUWSI) and Analytic Hierarchy Process (AHP), it combined primary data from household surveys across Addis Ababa’s 11 sub-cities with stakeholder perspectives from downstream towns (Adama, Awash, Lake Beseka) and secondary data from relevant authorities and literature. The analysis applied the framework of Drinking Water and Human well-being, Ecosystems, Climate Change and Water-Related Hazards, Socio-Economic Aspects (DECS). Statistical analyses (chi-square, regression, K-means clustering) confirmed significant correlations between location, water availability, and affordability. ArcGIS spatial mapping revealed distributions of turbidity (30 NTU downstream), E. coli (50 CFU/100 mL), and Water Quality Index (40–80). Water shortages affected 79.2% of respondents in Addis Ababa and 90–100% downstream, with Lake Beseka recording arsenic at 95.6 µg/L. Bole (IUWSI: 2.1) and Akaki Kality (2.2) were the most vulnerable sub-cities. Future projections indicate IUWSI could fall to 1.6 under Business-as-Usual or rise to 3.9 by 2050 under Sustainable Development scenarios. Recommendations include infrastructure upgrades, pollution control, climate-resilient strategies, transboundary governance, and enhanced community engagement, providing a scalable model for urbanizing basins and supporting Sustainable Development Goal 6 (SDG 6).

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Cite This Study

Legass et al. (2026) studied this question.

synapsesocial.com/papers/69aa70f8531e4c4a9ff5b3e3https://doi.org/10.1007/s43621-025-02575-x
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