Urban green spaces have been shown to decrease land surface temperature (LST) significantly. However, few studies have explored the relationships between urban green spaces and LST across different seasons at different spatial scales. In this study, using Changchun, China as a case study, landscape ecology and comparative approaches were employed quantitatively to investigate the effects of the composition and configuration of urban green spaces on the urban thermal environments. LST maps were retrieved from Landsat 8 Thermal Infrared Sensor (TIRS) data acquired on four dates that represented four different seasons, and detailed information of urban green spaces was extracted from high resolution imagery GF-1. Normalized differential vegeta...
Under the trend of rapid urbanization, the urban heat island (UHI) effect has become a hot issue for...
Urban vegetation can help decrease Land surface temperature (LST) to mitigate urban heat island (UHI...
The rapid increase of impervious surfaces and the dense development that accompanies urban growth ha...
Urban green spaces have been shown to decrease land surface temperature (LST) significantly. However...
Using SPOTS images and the Landsat TM, we selected Normalized Difference Vegetation Index (NDVI) and...
Increasing trends of urbanization lead to vegetation degradation in big cities and affect the urban ...
Background: Urban green space (UGS) has been shown to play an important role in mitigating urban hea...
The rapid changes of land covers in urban areas are one of major environmental concerns because of t...
The urban heat island describes the phenomenon that air/surface temperatures are higher in urban are...
The response of the urban thermal environment to green space landscapes has been studied previously,...
Understanding how green spaces affect urban temperature is crucial for assessing thermal benefits of...
Urban green space has been considered as an ecological measure to mitigate urban heat islands (UHI)....
Urban greenspace has been proven to play a significant role in mitigating the urban heat island (UHI...
Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Scienc...
An essential part of urban natural systems, urban green spaces play a crucial role in mitigating the...
Under the trend of rapid urbanization, the urban heat island (UHI) effect has become a hot issue for...
Urban vegetation can help decrease Land surface temperature (LST) to mitigate urban heat island (UHI...
The rapid increase of impervious surfaces and the dense development that accompanies urban growth ha...
Urban green spaces have been shown to decrease land surface temperature (LST) significantly. However...
Using SPOTS images and the Landsat TM, we selected Normalized Difference Vegetation Index (NDVI) and...
Increasing trends of urbanization lead to vegetation degradation in big cities and affect the urban ...
Background: Urban green space (UGS) has been shown to play an important role in mitigating urban hea...
The rapid changes of land covers in urban areas are one of major environmental concerns because of t...
The urban heat island describes the phenomenon that air/surface temperatures are higher in urban are...
The response of the urban thermal environment to green space landscapes has been studied previously,...
Understanding how green spaces affect urban temperature is crucial for assessing thermal benefits of...
Urban green space has been considered as an ecological measure to mitigate urban heat islands (UHI)....
Urban greenspace has been proven to play a significant role in mitigating the urban heat island (UHI...
Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Scienc...
An essential part of urban natural systems, urban green spaces play a crucial role in mitigating the...
Under the trend of rapid urbanization, the urban heat island (UHI) effect has become a hot issue for...
Urban vegetation can help decrease Land surface temperature (LST) to mitigate urban heat island (UHI...
The rapid increase of impervious surfaces and the dense development that accompanies urban growth ha...