Research Article

Long-term analysis of the meteorological factors on vegetation recovery after forest fire

Volume: 8 July 3, 2026

Long-term analysis of the meteorological factors on vegetation recovery after forest fire

Abstract

Global climate change exerts significant pressure on natural ecosystems through rising temperatures, irregular precipitation patterns, and increasing drought frequency. These conditions create more favorable environments for forest fires by reducing fuel moisture and extending the fire season. This study examines vegetation recovery following the 2008 forest fire in the Menderes district of İzmir Province, a region highly susceptible to fires due to its Mediterranean climate and dense forest cover. The relationship between the Enhanced Vegetation Index (EVI), derived from Landsat satellite imagery, and meteorological variables was modeled using the Ridge Regression method. Results show that relative and specific humidity, soil moisture, solar radiation, and precipitation were positively associated with vegetation growth, while surface temperature, evapotranspiration, and air temperature showed a negative correlation. The experimental results proved that meteorological factors explain approximately 70% of post-fire vegetation recovery. The remaining 30% is attributed to soil properties, topography, post-fire restoration efforts, and ecological processes.

Keywords

References

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Details

Primary Language

English

Subjects

Photogrammetry and Remote Sensing

Journal Section

Research Article

Publication Date

July 3, 2026

Submission Date

January 28, 2026

Acceptance Date

May 3, 2026

Published in Issue

Year 2026 Volume: 8

APA
Üzümlü, Y., Buğdaycı, İ., & Üstüner, M. (2026). Long-term analysis of the meteorological factors on vegetation recovery after forest fire. Turkish Journal of Remote Sensing, 8. https://doi.org/10.51489/tuzal.1873909
AMA
1.Üzümlü Y, Buğdaycı İ, Üstüner M. Long-term analysis of the meteorological factors on vegetation recovery after forest fire. TJRS. 2026;8. doi:10.51489/tuzal.1873909
Chicago
Üzümlü, Yusuf, İlkay Buğdaycı, and Mustafa Üstüner. 2026. “Long-Term Analysis of the Meteorological Factors on Vegetation Recovery After Forest Fire”. Turkish Journal of Remote Sensing 8 (July). https://doi.org/10.51489/tuzal.1873909.
EndNote
Üzümlü Y, Buğdaycı İ, Üstüner M (July 1, 2026) Long-term analysis of the meteorological factors on vegetation recovery after forest fire. Turkish Journal of Remote Sensing 8
IEEE
[1]Y. Üzümlü, İ. Buğdaycı, and M. Üstüner, “Long-term analysis of the meteorological factors on vegetation recovery after forest fire”, TJRS, vol. 8, July 2026, doi: 10.51489/tuzal.1873909.
ISNAD
Üzümlü, Yusuf - Buğdaycı, İlkay - Üstüner, Mustafa. “Long-Term Analysis of the Meteorological Factors on Vegetation Recovery After Forest Fire”. Turkish Journal of Remote Sensing 8 (July 1, 2026). https://doi.org/10.51489/tuzal.1873909.
JAMA
1.Üzümlü Y, Buğdaycı İ, Üstüner M. Long-term analysis of the meteorological factors on vegetation recovery after forest fire. TJRS. 2026;8. doi:10.51489/tuzal.1873909.
MLA
Üzümlü, Yusuf, et al. “Long-Term Analysis of the Meteorological Factors on Vegetation Recovery After Forest Fire”. Turkish Journal of Remote Sensing, vol. 8, July 2026, doi:10.51489/tuzal.1873909.
Vancouver
1.Yusuf Üzümlü, İlkay Buğdaycı, Mustafa Üstüner. Long-term analysis of the meteorological factors on vegetation recovery after forest fire. TJRS. 2026 Jul. 1;8. doi:10.51489/tuzal.1873909

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