Monitoring agricultural and meteorological drought using remote sensing

被引:3
作者
Imzahim A. Alwan
Abdulrazzak T. Ziboon
Alaa G. Khalaf
Quoc Bao Pham
Duong Tran Anh
Khaled Mohamed Khedher
机构
[1] University of Technology,Civil Engineering Department
[2] Ministry of Science and Technology,Institute of Applied Technology
[3] Space and Communication Directorate,Department of Civil Engineering, College of Engineering
[4] Thu Dau Mot University,Department of Civil Engineering
[5] HUTECH University,undefined
[6] 475A,undefined
[7] King Khalid University,undefined
[8] High Institute of Technological Studies,undefined
[9] Mrezgua University Campus,undefined
关键词
Drought; Iraq; Middle Euphrates area; RDI; VCI; Salinity;
D O I
10.1007/s12517-021-09407-y
中图分类号
学科分类号
摘要
Many regions of Iraq were suffering from (meteorological and agricultural) drought. Middle Euphrates region is one of these regions. Therefore, this study carried out to monitor this phenomenon in this region during period from 1988 to 2018. The Reconnaissance Drought Index (RDI) and the Vegetation Condition Index (VCI) have been utilized for monitoring the meteorological and agricultural droughts, respectively. The final results showed that the overall drought percentage in the study area had been increased compared with no drought percentage. The percentage of the no drought area was ranged from 8% (in 1988 and 2000) to 17% (in 2018). The severe and extreme drought classes recorded a higher ratio in the area followed by moderate and mild droughts. There is a high level of the dry season in the region, especially in its southern and western parts. The reason for drought particularly in these parts is due to the geological composition of its soils, where it consists sandy soils that are consistently subjected to erosion by the wind. Additionally, the high porosity of these soils adversely influenced on their water maintenance limit particularly water of precipitation. In addition to the absence of a source of surface water in these parts of the region and its dependence on the water of some wells with high salinity and unsuitable for agriculture.
引用
收藏
相关论文
共 40 条
  • [1] AL-Timimi YK(2014)Drought assessment in Iraq using analysis of Standardized precipitation index (SPI)" Iraqi J Phys 12 36-43
  • [2] AL-Jiboori MH(2012)Drought risk assessment in Iraq using remote sensing and GIS techniques" Iraqi J Sci 53 1078-1082
  • [3] Al-Timimi YK(2016)Comparison of remote sensing based indices for drought monitoring in Anantapur" Int J Appl Res 2 449-456
  • [4] George LE(2015)Regional landsat-based drought monitoring from 1982 to 2014 Climate 3 563-577
  • [5] Al-Jiboori MH(2015)Drought monitoring with spectral indices calculated from modis satellite images in Hungary J Environ Geogr 8 11-20
  • [6] Babu CM(2015)Monitoring of drought using satellite data Int Res J Earth Sci 3 66-72
  • [7] Hemalatha T(2008)Satellite-based Drought Estimation in Thessaly Eur Water 23 111-122
  • [8] Naik BR(2017)The predictability of reported drought events and impacts in the Ebro Basin using six different remote sensing data sets Hydrol Earth Syst Sci 21 4747-4765
  • [9] Ghaleb F(2010)Analysis of rainfall drought periods in the north of Iraq using standard precipitation index (SPI)" Al-Rafidain Eng 18 60-72
  • [10] Mario M(2007)Evaluating the impact of drought using remote sensing in a Mediterranean, semi-arid region Natural Hazards 40 173-208