Desertification Detected in the Udhaim River Basin, Iraq Based on Spectral Indices Derived from Remote Sensing Images

In this study, changes in Land Use Land Cover (LULC) have been investigated over the Udhaim River Basin in Iraq by using spectral indices. NDVI, NDBI, NDWI, NDBaI, and CI represent respectively the vegetation, built-up, water bodies, bare-land, and soil crust of LULC. Two different images were acqui...

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Main Author: Mail Abd Al Salam Mohammed
Format: Article
Language:English
Published: Sciendo 2017-09-01
Series:Miscellanea Geographica: Regional Studies on Development
Subjects:
gis
Online Access:https://doi.org/10.1515/mgrsd-2017-0007
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spelling doaj-dbc74fcf11ac4d529233e04afed1c32a2021-09-06T19:20:22ZengSciendoMiscellanea Geographica: Regional Studies on Development2084-61182017-09-0121312413110.1515/mgrsd-2017-0007mgrsd-2017-0007Desertification Detected in the Udhaim River Basin, Iraq Based on Spectral Indices Derived from Remote Sensing ImagesMail Abd Al Salam Mohammed0University of Warsaw, Faculty of Geography and Regional Studies, PolandIn this study, changes in Land Use Land Cover (LULC) have been investigated over the Udhaim River Basin in Iraq by using spectral indices. NDVI, NDBI, NDWI, NDBaI, and CI represent respectively the vegetation, built-up, water bodies, bare-land, and soil crust of LULC. Two different images were acquired for the analysis, namely a Landsat 5 TM image from 1 July 2007 and a Landsat 8 OLI from 5 June 2015, both representing summer conditions. Results show that the percentages of vegetated land and water body areas have decreased. On the contrary, the percentages of built-up, bare land and soil crust areas have increased. The loss of vegetated areas and water body areas is a signal of land degradation leading to desertification, due to the combined effects of climate conditions, water deficit and human activities. Field observation shows that human activities have a significant impact on land degradation.https://doi.org/10.1515/mgrsd-2017-0007desertificationgisremote sensingspectral indicesiraq
collection DOAJ
language English
format Article
sources DOAJ
author Mail Abd Al Salam Mohammed
spellingShingle Mail Abd Al Salam Mohammed
Desertification Detected in the Udhaim River Basin, Iraq Based on Spectral Indices Derived from Remote Sensing Images
Miscellanea Geographica: Regional Studies on Development
desertification
gis
remote sensing
spectral indices
iraq
author_facet Mail Abd Al Salam Mohammed
author_sort Mail Abd Al Salam Mohammed
title Desertification Detected in the Udhaim River Basin, Iraq Based on Spectral Indices Derived from Remote Sensing Images
title_short Desertification Detected in the Udhaim River Basin, Iraq Based on Spectral Indices Derived from Remote Sensing Images
title_full Desertification Detected in the Udhaim River Basin, Iraq Based on Spectral Indices Derived from Remote Sensing Images
title_fullStr Desertification Detected in the Udhaim River Basin, Iraq Based on Spectral Indices Derived from Remote Sensing Images
title_full_unstemmed Desertification Detected in the Udhaim River Basin, Iraq Based on Spectral Indices Derived from Remote Sensing Images
title_sort desertification detected in the udhaim river basin, iraq based on spectral indices derived from remote sensing images
publisher Sciendo
series Miscellanea Geographica: Regional Studies on Development
issn 2084-6118
publishDate 2017-09-01
description In this study, changes in Land Use Land Cover (LULC) have been investigated over the Udhaim River Basin in Iraq by using spectral indices. NDVI, NDBI, NDWI, NDBaI, and CI represent respectively the vegetation, built-up, water bodies, bare-land, and soil crust of LULC. Two different images were acquired for the analysis, namely a Landsat 5 TM image from 1 July 2007 and a Landsat 8 OLI from 5 June 2015, both representing summer conditions. Results show that the percentages of vegetated land and water body areas have decreased. On the contrary, the percentages of built-up, bare land and soil crust areas have increased. The loss of vegetated areas and water body areas is a signal of land degradation leading to desertification, due to the combined effects of climate conditions, water deficit and human activities. Field observation shows that human activities have a significant impact on land degradation.
topic desertification
gis
remote sensing
spectral indices
iraq
url https://doi.org/10.1515/mgrsd-2017-0007
work_keys_str_mv AT mailabdalsalammohammed desertificationdetectedintheudhaimriverbasiniraqbasedonspectralindicesderivedfromremotesensingimages
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