Monitoring the earth surface temperature and relationship land use with surface temperature using of OLI and TIRS Image

Earth surface temperature is an important indicator in the study of energy equilibrium models at the ground level on a regional and global scale. Due to the limitation of meteorological stations, remote sensing can be an appropriate alternative to the Earth's surface temperature. The main objec...

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Main Authors: sayyad asghari, hadi emami
Format: Article
Language:fas
Published: Kharazmi University 2019-06-01
Series:تحقیقات کاربردی علوم جغرافیایی
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Online Access:http://jgs.khu.ac.ir/article-1-3074-en.pdf
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author sayyad asghari
hadi emami
author_facet sayyad asghari
hadi emami
author_sort sayyad asghari
collection DOAJ
description Earth surface temperature is an important indicator in the study of energy equilibrium models at the ground level on a regional and global scale. Due to the limitation of meteorological stations, remote sensing can be an appropriate alternative to the Earth's surface temperature. The main objective of this study is to monitor the surface temperature and its relationship with land use, which is monitored using satellite imagery. For this purpose, the images were first obtained and the necessary pre-processing was applied to each one. Then it was compared to modeling and classification of images.  Firstly, in order to investigate the changes in user-orientation, a user-defined classification map for each object was extracted using the object-oriented method. Then, to investigate the land use change, a map of user-landing changes map was extracted in an 18-year time period (2000-2017). Finally, in order to monitor the surface temperature, the surface temperature map of Ardebil was extracted.  The results showed that there is a strong relationship between land use and surface temperature. As a user, urban users have a temperature of about 41 ° C (2017), which is also due to heat-absorbing urban temperatures.  This is despite the fact that the use of hydrocarbons is due to a lower heat absorption of 34 ° C (2017). This shows the role of different uses in determining surface temperatures.  Also, the relationship between surface temperature and vegetation cover was investigated in this study. The results showed that areas such as soil and urban areas with a lower coverage than areas such as agriculture and pasture, have a higher temperature.  Because the coating is always an obstacle to the entry of heat, it has an inverse relationship with superficial heat.
format Article
id doaj-art-adb3ef34d7c94bd39ec758effccf9c53
institution Kabale University
issn 2228-7736
2588-5138
language fas
publishDate 2019-06-01
publisher Kharazmi University
record_format Article
series تحقیقات کاربردی علوم جغرافیایی
spelling doaj-art-adb3ef34d7c94bd39ec758effccf9c532025-01-31T17:25:32ZfasKharazmi Universityتحقیقات کاربردی علوم جغرافیایی2228-77362588-51382019-06-011953195215Monitoring the earth surface temperature and relationship land use with surface temperature using of OLI and TIRS Imagesayyad asghari0hadi emami1 mohaghegh ardabili mohaghegh ardabili Earth surface temperature is an important indicator in the study of energy equilibrium models at the ground level on a regional and global scale. Due to the limitation of meteorological stations, remote sensing can be an appropriate alternative to the Earth's surface temperature. The main objective of this study is to monitor the surface temperature and its relationship with land use, which is monitored using satellite imagery. For this purpose, the images were first obtained and the necessary pre-processing was applied to each one. Then it was compared to modeling and classification of images.  Firstly, in order to investigate the changes in user-orientation, a user-defined classification map for each object was extracted using the object-oriented method. Then, to investigate the land use change, a map of user-landing changes map was extracted in an 18-year time period (2000-2017). Finally, in order to monitor the surface temperature, the surface temperature map of Ardebil was extracted.  The results showed that there is a strong relationship between land use and surface temperature. As a user, urban users have a temperature of about 41 ° C (2017), which is also due to heat-absorbing urban temperatures.  This is despite the fact that the use of hydrocarbons is due to a lower heat absorption of 34 ° C (2017). This shows the role of different uses in determining surface temperatures.  Also, the relationship between surface temperature and vegetation cover was investigated in this study. The results showed that areas such as soil and urban areas with a lower coverage than areas such as agriculture and pasture, have a higher temperature.  Because the coating is always an obstacle to the entry of heat, it has an inverse relationship with superficial heat.http://jgs.khu.ac.ir/article-1-3074-en.pdfland surface temperatureland useclassificationlandsat imageschanges detection
spellingShingle sayyad asghari
hadi emami
Monitoring the earth surface temperature and relationship land use with surface temperature using of OLI and TIRS Image
تحقیقات کاربردی علوم جغرافیایی
land surface temperature
land use
classification
landsat images
changes detection
title Monitoring the earth surface temperature and relationship land use with surface temperature using of OLI and TIRS Image
title_full Monitoring the earth surface temperature and relationship land use with surface temperature using of OLI and TIRS Image
title_fullStr Monitoring the earth surface temperature and relationship land use with surface temperature using of OLI and TIRS Image
title_full_unstemmed Monitoring the earth surface temperature and relationship land use with surface temperature using of OLI and TIRS Image
title_short Monitoring the earth surface temperature and relationship land use with surface temperature using of OLI and TIRS Image
title_sort monitoring the earth surface temperature and relationship land use with surface temperature using of oli and tirs image
topic land surface temperature
land use
classification
landsat images
changes detection
url http://jgs.khu.ac.ir/article-1-3074-en.pdf
work_keys_str_mv AT sayyadasghari monitoringtheearthsurfacetemperatureandrelationshiplandusewithsurfacetemperatureusingofoliandtirsimage
AT hadiemami monitoringtheearthsurfacetemperatureandrelationshiplandusewithsurfacetemperatureusingofoliandtirsimage