Arid
DOI10.1007/s12665-020-09010-6
Modeling of the natural groundwater recharge under climate change: Sisseb El Alem Nadhour Saouaf basin (Central Tunisia) case study
Hamdi, Mohamed1,2; Goita, Kalifa1; Jerbi, Hamza3; Zagrarni, Mohamed Faouzi2
通讯作者Hamdi, Mohamed
来源期刊ENVIRONMENTAL EARTH SCIENCES
ISSN1866-6280
EISSN1866-6299
出版年2020
卷号79期号:12
英文摘要In this work, two methods were used to assess the groundwater natural recharge of the Sisseb El Alem Nadhour Saouaf basin (SANS) in Northeastern of Tunisia. In fact, the natural recharge of the SANS aquifer remains a major unknown for hydrogeologists and decision makers. Based on the various databases that include geology, sedimentology, hydrology, geochemical and isotopic data, the groundwater natural recharge was estimated using two different approaches. In a first approach, a historical measurement of tritium, the radioactive isotope, was used to calculate the age of modern groundwater (< 50 years). The application of the tritium radioactivity model shows that in the SANS basin the renewal rate of groundwater ranges between 1.3 and 3%. However, this is difficult to generalize across the entire aquifer, given the large spatial and temporal variations of rain, and the uncertainty affecting the measurement of tritium rates in rain, as well as the uncertainty of the used radioactivity model. In the second approach, a quasi-steady hydrological model called the WetSpass model (Water and Energy Transfer between Soil, Plants and Atmosphere under quasi-steady state) was used to assess the spatiotemporal variability of the recharge. The results show that the average annual recharge between 1971 and 2016 is 10 Mm(3)/year. A value that remains minimal and that characterizes this kind of arid region. The spatial distribution maps of the recharge show that the maximum recharge occurs in the northwest edges of the basin, west and in the southern part, at the level of the outcrop permeable formations of the aquifers. Finally, the two methods used show that the groundwater natural recharge is very heterogeneous and limited in time and space. However, these results remain a further step to ameliorate the water budget of the SANS basin to perform a realistic hydrogeological model.
英文关键词Hydrological modeling Groundwater recharge Tritium Renewal rate SANS basin
类型Article
语种英语
国家Canada ; Tunisia
收录类别SCI-E
WOS记录号WOS:000540333000001
WOS关键词SURFACE-WATER ; AQUIFER SYSTEM ; TRITIUM ; IDENTIFICATION ; HYDROLOGY ; NORTHEAST ; TRACERS ; REGIONS ; STATE ; HE-3
WOS类目Environmental Sciences ; Geosciences, Multidisciplinary ; Water Resources
WOS研究方向Environmental Sciences & Ecology ; Geology ; Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/319501
作者单位1.Univ Sherbrooke, Ctr Applicat & Rech Teledetect CARTEL, Sherbrooke, PQ, Canada;
2.Univ Gabes, Higher Inst Water Sci & Tech, UR Appl Hydrosci UR ES 13 81, Gabes, Tunisia;
3.Natl Water Exploitat & Distribut Co, Hydrogeol Div, Tunis, Tunisia
推荐引用方式
GB/T 7714
Hamdi, Mohamed,Goita, Kalifa,Jerbi, Hamza,et al. Modeling of the natural groundwater recharge under climate change: Sisseb El Alem Nadhour Saouaf basin (Central Tunisia) case study[J],2020,79(12).
APA Hamdi, Mohamed,Goita, Kalifa,Jerbi, Hamza,&Zagrarni, Mohamed Faouzi.(2020).Modeling of the natural groundwater recharge under climate change: Sisseb El Alem Nadhour Saouaf basin (Central Tunisia) case study.ENVIRONMENTAL EARTH SCIENCES,79(12).
MLA Hamdi, Mohamed,et al."Modeling of the natural groundwater recharge under climate change: Sisseb El Alem Nadhour Saouaf basin (Central Tunisia) case study".ENVIRONMENTAL EARTH SCIENCES 79.12(2020).
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