Use of remote sensing techniques to assess water storage variations and flood-related inflows for the Hawizeh wetland

被引:4
作者
Alawadi, Wisam A. [1 ]
Raheem, Zahraa A. Hussain A. [2 ]
Yaseen, Dina A. [1 ]
机构
[1] Univ Basrah, Coll Engn, Dept Civil Engn, Basrah, Iraq
[2] Ctr Restorat Iraqi Marshes & Wetlands, Baghdad, Iraq
关键词
Remote sensing; Water storage; Spectral indices; Flood; Hawizeh marsh; NORMALIZED DIFFERENCE WATER; TIBETAN PLATEAU; SPECTRAL INDEXES; TIME-SERIES; EXTRACTION; DYNAMICS; LEVEL; NDWI; VEGETATION; DELTA;
D O I
10.1007/s10661-023-11838-x
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
High spatial and temporal resolution remote sensing data are becoming readily available. This has made the use of remote sensing to monitor and quantify spatiotemporal changes in surface waters feasible and efficient. In this paper, remote sensing techniques based on spectral indices were used to assess the changes in submerged areas and water storage in the Hawizeh marsh (south of Iraq) during the 2019 flood. Two water indices, the Normalized Difference Water Index (NDWI) and Normalized Difference Moisture Index (NDMI), were used for this purpose. Water indices have been frequently utilized to detect water bodies because of their particular spectral properties in the visible and infrared spectrum. Non-measured flood-related flows into the marsh have also been estimated by applying the water balance approach. The accuracy assessment of the water areas extracted by the remote sensing indices showed an acceptable degree of reliability, which reflected positively on the water inflow calculations. As the Hawizeh is a transboundary marsh shared by Iraq and Iran, remote sensing techniques allowed for the estimation of difficult-to-measure inflows from the Iranian side. The results of the water balance revealed that the inflows from the Iranian side to the marsh during the 5 months of the flood made up approximately 41.2% of the total water volume entering the marsh. The study demonstrated the feasibility of using uncomplicated water extraction methods that depend on remote sensing data to monitor hydrological changes in the Hawizeh wetland that lack sufficient data.
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页数:21
相关论文
共 73 条
[41]   Accurate water extraction using remote sensing imagery based on normalized difference water index and unsupervised deep learning [J].
Li, Junjie ;
Meng, Yizhuo ;
Li, Yuanxi ;
Cui, Qian ;
Yang, Xining ;
Tao, Chongxin ;
Wang, Zhe ;
Li, Linyi ;
Zhang, Wen .
JOURNAL OF HYDROLOGY, 2022, 612
[42]   Estimating the relationship between dam water level and surface water area for the Danjiangkou Reservoir using Landsat remote sensing images [J].
Li, Wenbo ;
Qin, Ying ;
Sun, Youqiang ;
Huang, He ;
Ling, Feng ;
Tian, Liqiao ;
Ding, Yulin .
REMOTE SENSING LETTERS, 2016, 7 (02) :121-130
[43]   A Comparison of Land Surface Water Mapping Using the Normalized Difference Water Index from TM, ETM plus and ALI [J].
Li, Wenbo ;
Du, Zhiqiang ;
Ling, Feng ;
Zhou, Dongbo ;
Wang, Hailei ;
Gui, Yuanmiao ;
Sun, Bingyu ;
Zhang, Xiaoming .
REMOTE SENSING, 2013, 5 (11) :5530-5549
[44]   Assessing methods of identifying open water bodies using Landsat 8 OLI imagery [J].
Liu, Zhaofei ;
Yao, Zhijun ;
Wang, Rui .
ENVIRONMENTAL EARTH SCIENCES, 2016, 75 (10)
[45]  
Lu SL, 2017, REMOTE SENS LETT, V8, P224, DOI [10.1080/2150704x.2016.1260178, 10.1080/2150704X.2016.1260178]
[46]   The use of the normalized difference water index (NDWI) in the delineation of open water features [J].
McFeeters, SK .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1996, 17 (07) :1425-1432
[47]   Water level fluctuations derived from ENVISAT Radar Altimeter (RA-2) and in-situ measurements in a subtropical waterbody:: Lake Izabal (Guatemala) [J].
Medina, Camilo Ernesto ;
Gomez-Enri, Jesus ;
Alonso, Jose J. ;
Villares, Pilar .
REMOTE SENSING OF ENVIRONMENT, 2008, 112 (09) :3604-3617
[48]   Application of time series of remotely sensed normalized difference water, vegetation and moisture indices in characterizing flood dynamics of large-scale arid zone floodplains [J].
Mohammadi, Abbas ;
Costelloe, Justin Francis ;
Ryu, Dongryeol .
REMOTE SENSING OF ENVIRONMENT, 2017, 190 :70-82
[49]  
Moosa H, 2018, ROUT INT HANDB, P188
[50]  
Muhsin I.J., 2011, Iraqi J. Sci, V52, P381