Arid
DOI10.1016/j.jaridenv.2018.05.005
Delineation of groundwater potential (GWP) in the northern United Arab Emirates and Oman using geospatial technologies in conjunction with Simple Additive Weight (SAW), Analytical Hierarchy Process (AHP), and Probabilistic Frequency Ratio (PFR) techniques
Abrams, William1; Ghoneim, Eman1; Shew, Roger1; LaMaskin, Todd1; Al-Bloushi, Khalid2; Hussein, Saber2; AbuBakr, Mostafa3; Al-Mulla, Esam4; Al-Awar, Meshgan5; El-Baz, Farouk6
通讯作者Abrams, William ; Ghoneim, Eman
来源期刊JOURNAL OF ARID ENVIRONMENTS
ISSN0140-1963
EISSN1095-922X
出版年2018
卷号157页码:77-96
英文摘要

In the United Arab Emirates (UAE) and Oman, an arid climate coupled with rising populations have placed increased demand on scarce water resources. This study performs groundwater prospecting in the northern UAE and Oman by delineating Groundwater Potential (GWP), the relative likelihood of a location to accumulate groundwater, by modelling the influence of physiographic variables affecting groundwater accumulation. Remote sensing data from ASTER, Landsat-8, Shuttle Radar Topography Mission (SRTM), and Tropical Rainfall Measuring Mission (TRMM) were used to map relevant physiographic variables including elevation, slope, curvature, drainage density, Topographic Wetness Index, lithology/land cover, lineament density, rainfall, and groundwater-induced cool thermal anomaly frequency (GW CTA). Three different techniques were used for the GWP model including Simple Additive Weight (SAW), Probabilistic Frequency Ratios (PFR), and the Analytical Hierarchy Process (AHP). The three derived GWP maps were assessed through validation by comparing the locations of 645 water wells, 49 natural springs, and field observations of groundwater features to GWP zones. The SAW and AHP maps were deemed valid with agreement to moderate or greater potential zones for wells at 98% and 92% and springs at 63% and 86% respectively, and all field observation locations for both maps. Based on the SAW and AHP maps, the highest GWP is located in the Dubai/Sharjah emirates due to optimal runoff accumulation, infiltration conditions, and subsurface storage capacity. Findings of this study demonstrate integration of remote sensing data with the adopted geospatial techniques is a practical method of groundwater prospecting in similarly data scarce, arid environments.


英文关键词Hydrology Geohydrology remote sensing GIS MODIS ASTER Cool thermal anomaly
类型Article
语种英语
国家USA ; U Arab Emirates ; Egypt
收录类别SCI-E
WOS记录号WOS:000442972800009
WOS关键词WATER-RESOURCES ; EASTERN SAHARA ; GIS ; ZONES ; CLIMATE ; EVOLUTION ; RECHARGE
WOS类目Ecology ; Environmental Sciences
WOS研究方向Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/210578
作者单位1.Univ North Carolina Wilmington, Dept Earth & Ocean Sci, Wilmington, NC USA;
2.United Arab Emirates Univ, Dept Geol, Al Ain, U Arab Emirates;
3.Al Azhar Univ, Dept Geol, Cairo, Egypt;
4.Sharjah Elect & Water Author, Sharjah, U Arab Emirates;
5.Dubai Police Acad, Res & Studies Ctr, Dubai, U Arab Emirates;
6.Boston Univ, Ctr Remote Sensing, Boston, MA 02215 USA
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Abrams, William,Ghoneim, Eman,Shew, Roger,et al. Delineation of groundwater potential (GWP) in the northern United Arab Emirates and Oman using geospatial technologies in conjunction with Simple Additive Weight (SAW), Analytical Hierarchy Process (AHP), and Probabilistic Frequency Ratio (PFR) techniques[J],2018,157:77-96.
APA Abrams, William.,Ghoneim, Eman.,Shew, Roger.,LaMaskin, Todd.,Al-Bloushi, Khalid.,...&El-Baz, Farouk.(2018).Delineation of groundwater potential (GWP) in the northern United Arab Emirates and Oman using geospatial technologies in conjunction with Simple Additive Weight (SAW), Analytical Hierarchy Process (AHP), and Probabilistic Frequency Ratio (PFR) techniques.JOURNAL OF ARID ENVIRONMENTS,157,77-96.
MLA Abrams, William,et al."Delineation of groundwater potential (GWP) in the northern United Arab Emirates and Oman using geospatial technologies in conjunction with Simple Additive Weight (SAW), Analytical Hierarchy Process (AHP), and Probabilistic Frequency Ratio (PFR) techniques".JOURNAL OF ARID ENVIRONMENTS 157(2018):77-96.
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