Integrated modeling of surface water and groundwater interactions in the Eastern Mitidja Plain, North Algeria: investigating the impact of human activities and climate change

被引:2
作者
Kastali, Fatima [1 ]
Meddi, Mohammed [1 ]
Boufekane, Abdelamdjid [2 ]
Longobardi, Antonia [3 ]
机构
[1] Higher Natl Sch Hydraul, Water Engn & Environm Lab, Blida 09000, Algeria
[2] Univ Sci & Technol Houari Boumed USTHB, Fac Earth Sci & Country Planning, Dept Geol, Geoenvironm Lab, Algiers 16111, Algeria
[3] Salerno Univ, Lab Environm & Maritime Hydraul, Via Giovanni Paolo II, Fisciano Salerno 13284084, Italy
关键词
climate change; Eastern Mitidja Plain; groundwater management; groundwater-surface water interaction; MODFLOW; numerical model; overexploitation; prediction; BASIN;
D O I
10.2166/wcc.2024.413
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
The study aims to investigate surface water (SW)-groundwater (GW) interactions in the Mitidja Plain (northern Algeria), taking into account the impacts of human activity and climate change emphasizing the alignment with Sustainable Development Goals, Clean Water and Sanitation, and Climate Action. The dynamic interactions between the El Hamiz River and the alluvial aquifer were studied using MODFLOW 6. A typical scenario analysis approach was employed, considering historical and projected climate conditions based on Coupled Model Intercomparison Project version 5 and Coupled Model Intercomparison Project phase 6 models, as well as current and projected GW abstraction rates. The findings reveal substantial changes in flow dynamics over time. In 1982, the aquifer refilled the river at a rate of 2.59 m(3)/s. In 2019, a new state was observed where the opposite occurred the river recharged the aquifer at a rate of 0.73 m(3)/s. This reduction in the flow rate can be attributed to over-pumping and declining recharge rates, and this pattern is anticipated to persist in the future. Furthermore, future forecasts indicate that GW overuse has a greater impact on GW dynamics compared to climate change. However, the adoption of saltwater desalination and enhanced irrigation methods could make a significant contribution to the sustainable development of GW resources, with an increase of up to approximately 14 m.
引用
收藏
页码:5570 / 5586
页数:17
相关论文
共 50 条
[31]   Integrated modelling to assess climate change impacts on groundwater and surface water in the Great Lakes Basin using diverse climate forcing [J].
Persaud, Elisha ;
Levison, Jana ;
MacRitchie, Scott ;
Berg, Steven J. ;
Erler, Andre R. ;
Parker, Beth ;
Sudicky, Edward .
JOURNAL OF HYDROLOGY, 2020, 584
[32]   Combination of CFCs and stable isotopes to characterize the mechanism of groundwater-surface water interactions in a headwater basin of the North China Plain [J].
Wang, Shiqin ;
Yuan, Ruiqiang ;
Tang, Changyuan ;
Song, Xianfang ;
Currell, Matthew ;
Yang, Zhenglun ;
Sheng, Zhuping .
HYDROLOGICAL PROCESSES, 2018, 32 (11) :1571-1587
[33]   Effect of Climate Change and Human Activities on Surface and Ground Water Quality in Major Cities of Pakistan [J].
Zeb, Hira ;
Yaqub, Asim ;
Ajab, Huma ;
Zeb, Iftikhar ;
Khan, Imran .
WATER, 2023, 15 (15)
[34]   Impact assessment of climate change and human activities on annual highest water level of Taihu Lake [J].
Qingfang HU Yintang WANG Department of Hydraulic Engineering Tsinghua University Beijing P R China Nanjing Hydraulic Research Institute Nanjing P R China .
Water Science and Engineering, 2009, 2 (01) :1-15
[35]   Impact assessment of climate change and human activities on annual highest water level of Taihu Lake [J].
Hu, Qing-fang ;
Wang, Yin-tang .
WATER SCIENCE AND ENGINEERING, 2009, 2 (01) :1-15
[36]   Integrated Surface Water and Groundwater Analysis under the Effects of Climate Change, Hydraulic Fracturing and its Associated Activities: A Case Study from Northwestern Alberta, Canada [J].
Saha, Gopal Chandra ;
Quinn, Michael .
HYDROLOGY, 2020, 7 (04)
[37]   Modeling climate change impact on chickpea production and adaptation options in the semi-arid North-Eastern Ethiopia [J].
Mohammed, Adem ;
Tana, Tamado ;
Singh, Piara ;
Molla, Adamu .
JOURNAL OF AGRICULTURE AND ENVIRONMENT FOR INTERNATIONAL DEVELOPMENT, 2016, 110 (02) :377-395
[38]   Analyzing the Impact of Climate Change and Human Activities on Surface Runoff in the Changbai Mountain Area, Northeast China [J].
Zhang, Shanjun ;
Liu, Jia ;
Li, Chuanzhe ;
Yu, Fuliang ;
Jing, Lanshu ;
Sun, Jiahui .
WATER, 2021, 13 (23)
[39]   Overview of microbial communities in the surface water of the Seine River to understand their response to climate change and human activities [J].
Bagagnan, Sadia ;
Guerin-Rechdaoui, Sabrina ;
Marconi, Anthony ;
Rocher, Vincent ;
Giusti-Miller, Stephanie ;
Moilleron, Regis ;
Jusselme, My Dung .
AQUATIC ECOLOGY, 2024, 58 (04) :1067-1089
[40]   Projecting the impact of human activities and climate change on water resources in the transboundary Sre Pok River Basin [J].
Pradhan, Pragya ;
Pham, Trang Thi Huyen ;
Shrestha, Sangam ;
Loc, Ho Huu ;
Park, Edward .
CLIMATIC CHANGE, 2022, 172 (3-4)