Author
Listed:
- Osman Nasanlı
(Department of Traditional Turkish Arts, Midyat Faculty of Arts and Design, Mardin Artuklu University, Mardin 47000, Türkiye)
- Kanimozhi R
(Department of Artificial Intelligence and Data Science, A.V.C. College of Engineering, Mayiladuthurai 609305, Tamilnadu, India)
- Nurullah Tan
(Department of Architecture and Urban Planning, Samsun University, Samsun 55000, Türkiye)
Abstract
Understanding the relationship between the processes involved in hydrology and changesin land use becomes more urgent amid the accelerated development of urban areas. In this regard, this paper proposes the application of a spatio-temporal analysis of flood vulnerability through multi-criteria analysis (Analytical Hierarchy Process), integrated with GIS and modeling of multidimensional urban development processes within Cizre, Turkey. Important hydrological factors for the formation of flood risks, such as elevation, slope, land use/cover, rainfall, drainage density, and proximity to the river, were considered when preparing the flood susceptibility map. It was revealed that high- and very-high-risk zones are mainly located near the Tigris River and in urbanized areas, which occupy more than half of the territory under consideration. Multidimensional analysis showed that unplanned development increases flood risks in the area because of the increased area of impervious surfaces and the violation of natural water flows. As a way to overcome the limitations of traditional methods of static analysis of flood risks, the Flood Risk Transfer Index (FRTI) has been developed to describe the process of spatial redistribution of risks resulting from the impact of the increase in urbanization rates. The indicator of spatial redistribution of flood risk reached a value of 0.72, showing that flood pressures increased in existing cities instead of reducing them. Thus, this study provides a breakthrough in understanding flood risks through the introduction of a new methodology.
Suggested Citation
Osman Nasanlı & Kanimozhi R & Nurullah Tan, 2026.
"A Dynamic AHP–GIS Framework for Spatio-Temporal Flood Risk Assessment Incorporating Flood Risk Transfer Index (FRTI),"
Sustainability, MDPI, vol. 18(10), pages 1-27, May.
Handle:
RePEc:gam:jsusta:v:18:y:2026:i:10:p:5038-:d:1944701
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