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October 1, 2025Urban Science3 citationsOpen Access

Public Garden Environmental Factors Impact on Land Surface Temperatures of the Adjacent Urban Areas in an Arid Region

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MGMarouane Samir GuedouhKYKamal YoucefRHRabah Hadji

Key Points

  • Air temperature is the main factor influencing land surface temperature, responsible for 72% of its variation.
  • A significant urban heat island effect was observed, with the highest temperatures in the North-East area of Biskra.
  • Public gardens play a crucial role in cooling urban environments by providing shade and facilitating moisture exchange.
  • The use of satellite remote sensing and onsite measurements allows for a comprehensive analysis of environmental impacts around public gardens.

Abstract

Urban growth in hot, arid regions intensifies the urban heat island effect, making green spaces vital for climate mitigation. This research investigates the impact of public gardens on the surrounding urban thermal environment and on the mitigation of the urban heat island (UHI) in a hot arid region. This study selects an important public garden in Biskra, the “5 July 1962” Garden, as a case study of significance at the urban scale. To achieve research objectives, onsite measurement using a digital measurement device (5-in-1 Environmental Meter “Extech EN300”) and satellite remote sensing data from LANDSAT8 are employed, capturing summer measurements of key parameters and indices: Land Surface Temperature (LST), Air Temperature (AT), Relative Humidity (RH), Normalized Difference Vegetation Index (NDVI), Normalized Difference Water Index (NDWI) and Normalized Difference Moisture Index (NDMI). The analysis and correlation of these indices with the LST values allow us to evaluate the zoning and distance impacts of the garden studied. Land surface temperature rises gradually from the garden outward, peaking in the North-East with the strongest heat island effect and remaining lower in the cooler, vegetation-rich South-West. The results reveal that air temperature is the primary driver of land surface temperature (72% impact), while relative humidity (17.3%), vegetation index (7.8%), moisture index (2.9%), and water index (1.7%) contribute to cooling, with vegetation and moisture reducing surface temperatures through shading, transpiration, and latent heat exchange.

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Cite This Study

Guedouh et al. (2025) studied this question.

synapsesocial.com/papers/68dd89e6fe798ba2fc49824bhttps://doi.org/10.3390/urbansci9100391
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