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May 4, 2026Land4 citationsOpen Access

Assessing the Impact of Land Use and Land Cover Changes on Flood Hazard in the Wadi Ibrahim Watershed

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AHAsep HidayatullohAEAmro ElfekiJBJ BAHRAWI

Key Points

  • The aim is to assess how land use and land cover changes influence flood hazards in the Wadi Ibrahim watershed.
  • Analyzed historical (2001-2025) and projected (2037) land use and land cover changes using remote sensing and GIS.
  • Simulated future scenarios with the MOLUSCE plugin in QGIS utilizing Cellular Automata-Artificial Neural Network techniques.
  • Conducted hydrological simulations to evaluate changes in flood discharge in response to land use transitions.
  • Urban area increased from 12 km2 (11%) in 2001 to 28.7 km2 (26%) in 2025, projected to reach 31.9 km2 (28.3%) by 2037.
  • Increased impervious surface fraction from 11% to 28% between 2001 and 2025.
  • Flood discharge peaked with an up to 12% increase and runoff volume by approximately 9% from 2001 to 2037.

Abstract

Land Use and Land Cover (LULC) changes significantly influence flood hazard, especially in rapidly urbanizing areas like the Wadi Ibrahim watershed in Makkah, Saudi Arabia. This study analyzed the impacts of historical (2001–2025) and projected (2037) LULC changes on floods using remote sensing, GIS, and hydrological modeling with 30 m DEM and Landsat data. Urban growth was assessed from 2001, 2013, and 2025 maps, and future scenarios were simulated with the MOLUSCE plugin in QGIS using Cellular Automata–Artificial Neural Network (CA-ANN) techniques. Hydrological simulations were used to examine changes in flood discharge and response to LULC transitions. The results revealed substantial urban expansion, with built-up areas increasing from 12 km2 (11%) in 2001 to 28.7 km2 (26%) in 2025 and projected to reach 31.9 km2 (28.3%) by 2037. The corresponding impervious surface fraction rose from 11% to 28% over the same period. Hydrological modeling for 50-, 100-, and 200-year return periods reveals a significant escalation in flood response, with peak discharge (Qp) increasing by up to 12% and runoff volume (V) by approximately 9% between 2001 and 2037. The LULC classification using the Random Forest algorithm demonstrated strong and reliable performance, achieving an average Kappa (κ) value of 0.86, indicating almost perfect agreement. Overall, the findings underscore the need for sustainable land management to reduce flood risk in rapidly growing arid regions.

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Cite This Study

Hidayatulloh et al. (2026) studied this question.

synapsesocial.com/papers/69f837423ed186a7399816f8https://doi.org/10.3390/land15050742
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