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March 30, 20260 citationsOpen Access

Spatio-Temporal Analysis Of Vegetation Decline And Its Impact On Land Surface Temperature And Urban Heat Island Intensification In English Bazar Municipality, West Bengal (2001–2025)

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SSSouvik Shil

Key Points

  • To investigate how changes in vegetation affect land surface temperature and urban heat islands in English Bazar Municipality.
  • Analyzed multi-temporal satellite data from 2001 to 2025.
  • Examined vegetation dynamics and their correlation with land surface temperature.
  • Utilized NDVI (Normalized Difference Vegetation Index) to assess vegetation cover and heat intensity.
  • Vegetation cover consistently declined over the study period.
  • Mean land surface temperature increased from 30.43°C in 2001 to 40.41°C in 2025.
  • A strong inverse relationship was found between NDVI and land surface temperature, indicating that lower vegetation correlates with higher temperatures.

Abstract

Rapid urbanization and land surface transformations significantly influence local thermal environments, leading to the intensification of Urban Heat Island (UHI) effects. This study analyses the spatio-temporal relationship between vegetation dynamics and Land Surface Temperature (LST) in English Bazar Municipality (EBM), West Bengal, over the period 2001–2025 using multi-temporal satellite data. The results indicate a consistent decline in vegetation cover, accompanied by a substantial increase in surface temperature. The mean LST increased from approximately 30.43°C in 2001 to 40.41°C in 2025, reflecting pronounced thermal intensification. A strong inverse relationship between NDVI and LST is observed, with low vegetation areas corresponding to higher temperatures. High-temperature zones have expanded notably in the central and eastern parts of the municipality, indicating the growth of UHI hotspots. The study demonstrates that vegetation loss and urban expansion are key drivers of rising surface temperature and UHI intensification, highlighting the need for climate-responsive urban planning and increased green cover to mitigate future thermal stress.

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Souvik Shil (2026) studied this question.

synapsesocial.com/papers/69ca1369883daed6ee095617https://doi.org/10.5281/zenodo.19280078
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