Close Menu
Scientific-Professional Society for Disasaster Risk ManagementScientific-Professional Society for Disasaster Risk Management
    Facebook X (Twitter) Instagram
    Facebook X (Twitter) Instagram YouTube LinkedIn TikTok
    Scientific-Professional Society for Disasaster Risk ManagementScientific-Professional Society for Disasaster Risk Management
    Contact
    • About
      • History
      • President
      • Members
      • Secretary
      • Documentation
        • Statute
        • Communication Strategy
        • Work Information Booklet
        • Seminar Programs
        • Training Programs
        • Regulations on Identification Cards, Badges, and Uniforms
        • Cooperation Agreements
        • Organization Flyer
        • Membership Application Form
      • Membership
      • Contact SPS-DRM
    • Publication
      • Books
      • Collection of papers
      • Scientific papers
      • Broschure
      • Flyers and Posters
      • International journal (IJDRM)
    • IJDRM
      • Volume 8, Number 1
      • Volume 7, Number 2
      • Volume 7, Number 1
      • Volume 6, Number 2
      • Volume 6, Number 1
      • Volume 5, Number 2
      • Volume 5, Number 1
      • Volume 4, Number 2
      • Volume 4, Number 1
      • Volume 3, Number 2
      • Volume 3, Number 1
      • Volume 2, Number 2
      • Volume 2, Number 1
      • Volume 1, Number 2
      • Volume 1, Number 1
    • ProSafeNet
    • Science
      • International Institute
      • Research Projects
      • Research Collaboration
      • International Conference
    • Education
      • Training
      • Seminars
    • Information
      • Gallery / Training Photo Archive
      • Announcements
      • Media
      • Donations and Sponsorships
    • Posts
    Scientific-Professional Society for Disasaster Risk ManagementScientific-Professional Society for Disasaster Risk Management
    Home»Published papers»Unveiling An Efficient Framework for Predicting Flood Risk Areas, Using Earth Observatory Data, Google Earth Engine, and Multicriteria Decision Making-Analytical Hierarchy Process
    Published papers

    Unveiling An Efficient Framework for Predicting Flood Risk Areas, Using Earth Observatory Data, Google Earth Engine, and Multicriteria Decision Making-Analytical Hierarchy Process

    EditorBy EditorAugust 14, 2026No Comments2 Mins Read
    Facebook Twitter LinkedIn Telegram Pinterest Tumblr Reddit WhatsApp Email
    Unveiling An Efficient Framework for Predicting Flood Risk Areas
    Unveiling An Efficient Framework for Predicting Flood Risk Areas
    Share
    Facebook Twitter LinkedIn Pinterest Email

    The flood risk in the Niger-East region of Niger State is increasingly becoming an annual event. Climatic shifts, land-surface modifications, and human socioeconomic factors are among the conditions that trigger floods. This study explores geospatial technology and multicriteria decision analysis-analytical hierarchy process (MCDA-AHP) to develop a flood risk prediction system that leverages Google Earth Engine to process remote sensing data directly influencing flood risk. Elevation, slope, drainage density, rainfall, soil, proximity to drainage, proximity to road, population density, flow accumulation, and land use land cover (LULC). The weightage assignment was performed using the MCDA-AHP technique. Flood risk classes predicted as very low, 13.82 km2 (9.29%), low, 18.77 km2 (12.61%), low – moderate, 111.97 km2 (75.24%), high, 3.32 km2 (2.23%), and very high, 0.93 km2 (0.63%) of the study area, respectively. This research presents a flood emergency response system that highlights the impact of different prioritization criteria across multiple conditions. Therefore, integrating GEE to generate different flood-conditioning risk indicators, prioritized and ranked using MCDA-AHP, is crucial for developing an efficient methodological framework for flood risk prediction across a wide region, achieving 88% precision. Thus, effective for evidence-based decision-making by authorities, policy makers, and emergency response agencies.

    Authors
    Ishaku Bashir Yakubu
    Department of Geography, Faculty of Physical Sciences, Ibrahim Badamasi Babangida University, PMB 11, Lapai, Niger State, Nigeria
    Author
    https://orcid.org/0000-0001-9471-5047
    Sheikh D. Abubakar
    Department of Geography, Faculty of Physical Sciences, Ibrahim Badamasi Babangida University, PMB 11, Lapai, Niger State, Nigeria
    Author
    https://orcid.org/0000-0002-0497-7797
    Solomon Ndace Jiya
    Department of Geography, Faculty of Physical Sciences, Ibrahim Badamasi Babangida University, PMB 11, Lapai, Niger State, Nigeria
    Author
    Yakubu Muhammad
    Department of Soil Science, Faculty of Agriculture, Ibrahim Badamasi Babangida University, PMB 11, Lapai, Niger State, Nigeria
    Author
    Aisha Yakubu Aliyu
    Department of Mathematics, Faculty of Physical Sciences, Ibrahim Badamasi Babangida University, PMB 11, Lapai, Niger State, Nigeria
    Author
    https://orcid.org/0000-0002-9933-8057
    DOI: https://doi.org/10.66050/xfxaaq83
    Keywords: Google Earth Engine, MCDA-AHP, GIS, remote sensing, flood prediction, Niger East

    https://internationaljournalofdisasterriskmanagement.com/index.php/Vol1/article/view/201

    Unveiling An Efficient Framework for Predicting Flood Risk Areas
    Share. Facebook Twitter Pinterest LinkedIn Tumblr Telegram Email
    Previous ArticleSpatiotemporal Patterns of Cancer among Women in Central Serbia: Relevance for Risk-Informed Health Planning
    Next Article Exploring Non-Structural Flood Risk Management Measures in Haor Areas of Sunamganj, Bangladesh
    Editor
    • Website

    Prof. Dr. Vladimir M. Cvetković is recognized as a leading expert in Disaster Risk Management, with a focus on Risk Reduction, Preparedness, Response, and Recovery. He has authored over 300 scientific papers published in domestic and international journals and proceedings, as well as 30 books.

    Related Posts

    Beyond Platform Type: Effects of Vegetation Density, Sensor Modality, and Search Strategy on Aerial Search and Rescue Performance

    August 14, 2026

    Administrative Risks and Logistics Supply Challenges in Gaza Shelter Centers During the 2023–2026 Conflict

    August 14, 2026

    Assessing Local Disaster Governance in Coastal Bangladesh: Comparing Institutional and Community Perspectives on Disaster Management Committees

    August 14, 2026
    Add A Comment
    Leave A Reply

    You must be logged in to post a comment.

    Scientific-Professional Society for Disaster Risk Management (SPS-DRM) President’s Office: president@spsdrm.org Administrative Office: secretary@spsdrm.org Belgrade, Serbia | www.spsdrm.org
    Scientific-Professional Society for Disaster Risk Management, Belgrade, Serbia.

    The Association “Scientific-Professional Society for Disaster Risk Management”  (www.spsdr.com) is a non-governmental and non-profit association, established for an indefinite period, for the purpose of achieving objectives related to the advancement of scientific and professional knowledge and practice in the field of disaster risk management, emergencies, security, protection and community resilience, through the implementation of quantitative and/or qualitative research, publishing activities (journals, books and other publications), organizing national and international events, conducting formal and non-formal forms of education and professional development, preparing expert analyses, risk assessments and planning documents, developing digital platforms and knowledge bases, as well as other activities in accordance with the law and this Statute.

    International Journal of Disaster Risk Management

    The International Journal of Disaster Risk Management (IJDRM) is a double-blind peer-reviewed, open-access international scientific journal, published twice a year, dedicated to advancing interdisciplinary research, policy, and professional practice in the fields of disaster risk management, disaster risk reduction, hazards, emergencies, and resilience. The journal provides an international platform for researchers, academics, practitioners, policymakers, emergency managers, and other professionals to exchange knowledge, research findings, and innovative approaches to disaster prevention and management. IJDRM publishes theoretical, empirical, methodological, and applied contributions covering the entire disaster risk management cycle—prevention, mitigation, preparedness, response, recovery, reconstruction, and resilience-building.   www.ijdrm.com

    Scientific-Professional Society for Disaster Risk Management (SPS-DRM)

    Type above and press Enter to search. Press Esc to cancel.