Towards Sustainable Wildfire Management at the Wildland–Urban Interface: A WUIMAP II and Fuel Aggregation Approach in Djebel El Ouahch, Algeria

Wildland–urban interfaces (WUIs) are critical zones for wildfire prevention in Mediterranean and semi-arid landscapes, particularly where human settlements interact with continuous combustible vegetation. In Algeria, operational tools for delineating WUI configurations and spatially prioritizing preventive actions remain limited. This study develops a GIS-based structural wildfire-risk prioritization framework for the Djebel El Ouahch massif (Constantine, northeastern Algeria) by combining WUIMAP II settlement typologies with an Aggregation Index (AI) describing the horizontal continuity of arboreal and shrub vegetation derived from Sentinel−2 data. Built-up structures were classified as isolated housing, dispersed housing, main urbanized areas, or peripheral zones and combined with three AI classes to delineate relative structural-priority areas. Dispersed and isolated housing accounted for 55% and 37% of mapped housing structures, respectively, while the WUI contained an estimated 18,100 inhabitants distributed across 3620 housing units. The resulting WUI × AI structural-priority layer covered 0.863 km2, of which high- and very-high-priority zones jointly represented 0.544 km2 (63.04%). These priority areas identify locations where structurally exposed settlement configurations coincide with greater horizontal fuel continuity, providing a spatial basis for targeted fuel management, surveillance planning, emergency-access improvement, and wildfire-prevention actions. By improving the spatial targeting of preventive measures, the framework can contribute to sustainable forest and land management, disaster-risk reduction, ecosystem protection, and the resilience of WUI settlements.

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Publication Details

Journal
Sustainability
Published
2026-09-11
DOI
https://doi.org/10.3390/su18189348
Primary Topic
Fire effects on ecosystems
Type
article
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article

Towards Sustainable Wildfire Management at the Wildland–Urban Interface: A WUIMAP II and Fuel Aggregation Approach in Djebel El Ouahch, Algeria

Mohamed S. Shokr, Amira SOUALAH, Abdelhafid Bouzekri, Louiza Soualah et al.
Sustainability
Fire effects on ecosystems
article

Towards Sustainable Wildfire Management at the Wildland–Urban Interface: A WUIMAP II and Fuel Aggregation Approach in Djebel El Ouahch, Algeria

Mohamed S. Shokr, Amira SOUALAH, Abdelhafid Bouzekri, Louiza Soualah, Toufik Aliat, Eric Maille
article en

Abstract

Wildland–urban interfaces (WUIs) are critical zones for wildfire prevention in Mediterranean and semi-arid landscapes, particularly where human settlements interact with continuous combustible vegetation. In Algeria, operational tools for delineating WUI configurations and spatially prioritizing preventive actions remain limited. This study develops a GIS-based structural wildfire-risk prioritization framework for the Djebel El Ouahch massif (Constantine, northeastern Algeria) by combining WUIMAP II settlement typologies with an Aggregation Index (AI) describing the horizontal continuity of arboreal and shrub vegetation derived from Sentinel−2 data. Built-up structures were classified as isolated housing, dispersed housing, main urbanized areas, or peripheral zones and combined with three AI classes to delineate relative structural-priority areas. Dispersed and isolated housing accounted for 55% and 37% of mapped housing structures, respectively, while the WUI contained an estimated 18,100 inhabitants distributed across 3620 housing units. The resulting WUI × AI structural-priority layer covered 0.863 km2, of which high- and very-high-priority zones jointly represented 0.544 km2 (63.04%). These priority areas identify locations where structurally exposed settlement configurations coincide with greater horizontal fuel continuity, providing a spatial basis for targeted fuel management, surveillance planning, emergency-access improvement, and wildfire-prevention actions. By improving the spatial targeting of preventive measures, the framework can contribute to sustainable forest and land management, disaster-risk reduction, ecosystem protection, and the resilience of WUI settlements.

SustainabilityVol. 18(18)
University Frères Mentouri Constantine 1 (DZ), Peoples' Friendship University of Russia (RU), Tanta University (EG), Higher National Veterinary School (DZ), Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement (FR), Université Constantine 2 (DZ), Higher National School of Forests
Openalex Percentile: Top 13%
Fire effects on ecosystems
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