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March 29, 2026Remote Sensing0 citationsOpen Access

Spatial Heterogeneity and Responses of Wildfire Drivers Across Diverse Climatic Regions in China

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XFXiaoxiao FengHWHuiran WangZZZhiqi Zhang

Key Points

  • This research aims to systematically assess the spatiotemporal patterns and drivers of wildfires across various climatic regions in China.
  • Combined MCD64A1 burned area data (2001–2023) with meteorological, vegetation, and topographic factors.
  • Used random forest models to analyze the data at national and regional scales.
  • Identified dominant wildfire drivers and their spatial variations.
  • Wildfires were predominantly located in northeastern and southern China, covering 86.20% of the total burned area.
  • Northern regions experienced a spring-dominated fire regime, while southern regions were winter-dominated.
  • Elevation emerged as the primary factor influencing wildfire occurrence, particularly in low-elevation areas.

Abstract

Wildfires are a major natural hazard causing extensive ecological damage and endangering human survival. Previous studies on wildfires in China have mostly focused on specific regions or individual drivers, with limited systematic assessments at the long-term and national scales. The spatiotemporal patterns of wildfires and their multiple driving mechanisms under China’s diverse climatic regimes remain insufficiently understood. To bridge this gap, we combined MCD64A1 burned area data (2001–2023) with multi-source natural (meteorological, vegetation, and topographic) and anthropogenic factors, using random forest models at both the national and regional scales to examine the spatiotemporal patterns, dominant drivers, and response mechanisms of wildfires in China. The results revealed that: (1) Spatially, wildfires were concentrated in northeastern and southern China, which accounted for 86.20% of the total burned area. Temporally, northern wildfires were primarily a spring-dominated fire regime, with peak activity in March and April, whereas southern wildfires were winter-dominated, peaking in February. (2) At the national scale, elevation was the key topographic factor influencing wildfire occurrence (relative importance = 0.49), with low-elevation and gentle-slope areas being more fire-prone. At the regional scale, the driving factors exhibit spatial differentiation, forming a spatial pattern of topography-dominated and climate-dominated. (3) Partial dependence plot analysis revealed nonlinear and threshold responses. Fire probability increases rapidly when the soil moisture is below 20 mm, while extremely high land surface temperatures in arid regions suppress fire occurrence due to fuel limitations. This study enhances the understanding of spatially heterogeneous wildfire drivers in China and provides a scientific basis for region-specific wildfire prevention and management strategies.

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Cite This Study

Feng et al. (2026) studied this question.

synapsesocial.com/papers/69c8c3cede0f0f753b39ed18https://doi.org/10.3390/rs18071007
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