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Seasonal hazard-vulnerability patterns between drought and wildfire in New Caledonia derived from remote sensing products
Article de revue scientifique   Open Access   Avec comité de lecture

Seasonal hazard-vulnerability patterns between drought and wildfire in New Caledonia derived from remote sensing products

Mathis Neuhauser, Alexandre Peltier, Thomas Ibanez, Marc Despinoy et Michel Le Page
International Journal of Applied Earth Observation and Geoinformation, Vol.146
01/02/2026

Résumé

Feedback effects Fire risk Directional interaction analysis Burned areas Vegetation drought Remote sensing
Climate change is escalating the frequency and intensity of droughts and wildfires globally. In New Caledonia, future intensification is projected, yet the seasonal and directional temporal relationships between vegetation drought and wildfire activity remain insufficiently characterized at the regional scale. This study presents a regional case study combining remote sensing and in-situ datasets spanning 2000-2024, aggregated at monthly and municipal scales, to analyse drought-fire temporal interactions in New Caledonia. The approach quantifies the temporal sequencing of interactions between vegetation condition and burned area occurrence, distinguishing periods when vegetation stress precedes fire activity (fire hazard) from periods when fire occurrence is followed by altered vegetation conditions (post-fire vulnerability and potential feedbacks). Lagged and seasonal correlation analyses were conducted using the Vegetation Health Index (VHI) as a proxy of vegetation drought and the Burned areas Anomaly Index (BAI) to characterize wildfire activity. Results reveal robust and spatially coherent correlations between vegetation drought and burned area extent, highlighting the strong association between VHI and subsequent wildfire activity. Distinct seasonal interaction patterns emerge, with vegetation condition preceding fire activity during the early dry season (August-September), while fire occurrence is followed by modified surface conditions over subsequent months (November-May), consistent with postfire ecosystem vulnerability and feedback mechanism. Marked geographic contrasts are observed, particularly between the west and east coasts. These findings improve understanding of drought-fire temporal linkages in New Caledonia and provide actionable, region-specific insights for seasonally targeted and spatially explicit wildfire risk management.

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