Arid
DOI10.1016/j.jhydrol.2018.04.010
3D mapping, hydrodynamics and modelling of the freshwater-brine mixing zone in salt flats similar to the Salar de Atacama (Chile)
Marazuela, M. A.1,2,3; Vazquez-Sune, E.1; Custodio, E.2,4; Palma, T.1,2,3; Garcia-Gil, A.5; Ayora, C.1
通讯作者Marazuela, M. A.
来源期刊JOURNAL OF HYDROLOGY
ISSN0022-1694
EISSN1879-2707
出版年2018
卷号561页码:223-235
英文摘要

Salt flat brines are a major source of minerals and especially lithium. Moreover, valuable wetlands with delicate ecologies are also commonly present at the margins of salt flats. Therefore, the efficient and sustainable exploitation of the brines they contain requires detailed knowledge about the hydrogeology of the system. A critical issue is the freshwater-brine mixing zone, which develops as a result of the mass balance between the recharged freshwater and the evaporating brine.


The complex processes occurring in salt flats require a three-dimensional (3D) approach to assess the mixing zone geometry. In this study, a 3D map of the mixing zone in a salt flat is presented, using the Salar de Atacama as an example. This mapping procedure is proposed as the basis of computationally efficient three-dimensional numerical models, provided that the hydraulic heads of freshwater and mixed waters are corrected based on their density variations to convert them into brine heads. After this correction, the locations of lagoons and wetlands that are characteristic of the marginal zones of the salt flats coincide with the regional minimum water (brine) heads.


The different morphologies of the mixing zone resulting from this 3D mapping have been interpreted using a two-dimensional (2D) flow and transport numerical model of an idealized cross-section of the mixing zone. The result of the model shows a slope of the mixing zone that is similar to that obtained by 3D mapping and lower than in previous models. To explain this geometry, the 2D model was used to evaluate the effects of heterogeneity in the mixing zone geometry. The higher the permeability of the upper aquifer is, the lower the slope and the shallower the mixing zone become. This occurs because most of the freshwater lateral recharge flows through the upper aquifer due to its much higher transmissivity, thus reducing the freshwater head. The presence of a few meters of highly permeable materials in the upper part of these hydrogeological systems, such as alluvial fans or karstifled evaporites that are frequently associated with the salt flats, is enough to greatly modify the geometry of the saline interface.


英文关键词Salt flat Saltwater intrusion Saline interface Brine Groundwater modelling Aquifer heterogeneity
类型Article
语种英语
国家Spain
收录类别SCI-E
WOS记录号WOS:000439401800018
WOS关键词GROUNDWATER-FLOW ; SEAWATER INTRUSION ; NORTHERN CHILE ; DE-ATACAMA ; BASIN ; DESERT ; STRATIGRAPHY ; EVOLUTION ; PATTERN ; MARGIN
WOS类目Engineering, Civil ; Geosciences, Multidisciplinary ; Water Resources
WOS研究方向Engineering ; Geology ; Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/211063
作者单位1.CSIC, Inst Environm Assessment & Water Res IDAEA, Jordi Girona 18-26, ES-08034 Barcelona, Spain;
2.Tech Univ Catalonia UPC, Dept Civil & Environm Engn, Jordi Girona 1-3, Barcelona 08034, Spain;
3.UPC CSIC, Associated Unit Hydrogeol Grp, Barcelona, Spain;
4.Royal Acad Sci Spain, Madrid, Spain;
5.Geol & Min Inst Spain IGME, Manuel Lasala 44,9 B, Zaragoza 50006, Spain
推荐引用方式
GB/T 7714
Marazuela, M. A.,Vazquez-Sune, E.,Custodio, E.,et al. 3D mapping, hydrodynamics and modelling of the freshwater-brine mixing zone in salt flats similar to the Salar de Atacama (Chile)[J],2018,561:223-235.
APA Marazuela, M. A.,Vazquez-Sune, E.,Custodio, E.,Palma, T.,Garcia-Gil, A.,&Ayora, C..(2018).3D mapping, hydrodynamics and modelling of the freshwater-brine mixing zone in salt flats similar to the Salar de Atacama (Chile).JOURNAL OF HYDROLOGY,561,223-235.
MLA Marazuela, M. A.,et al."3D mapping, hydrodynamics and modelling of the freshwater-brine mixing zone in salt flats similar to the Salar de Atacama (Chile)".JOURNAL OF HYDROLOGY 561(2018):223-235.
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