Pontificia Universidad Católica de Chile Pontificia Universidad Católica de Chile
15.Marti, E., Leray, S., Roques, C., Yáñez, G. Poblete, F., Abhervé, R., et al.(2025). Assessing Structural geological controls on groundwater processes in mountain settings: Insights from three?dimensional numerical modeling.Water Resources Research, 61, e2024WR037474.https:// doi.org/10.1029/2024WR037474 (2025)

Assessing Structural geological controls on groundwater processes in mountain settings: Insights from three?dimensional numerical modeling

Revista : Water Resources Research
Tipo de publicación : Revistas Ir a publicación

Abstract

Mountainsplayacriticalroleinthehydrologicalcyclebytransferringheavyprecipitationtolowlandaquifers.However, theircomplexityandremotenesslimitourunderstandingofgroundwaterflow,particularlytheinfluenceoffaults.Tofill thegap,semi?idealized3Dnumericalmodelscalibratedusingthemountainrivernetworkandthelowlandpiezometricgradientweredeveloped.Theimpactoffaultsongroundwaterflowwasexploredbyvaryingtheirhydraulicconductivity,position,orientation,andlength.Themetricsevaluatedwereflowpartitioning,seepagearea,flowpathlengths,andresidencetimes.Itwasfoundthatthehydraulicconductivitycontrastbetweenafaultandthepervasiverockcontrolsrechargepartitioningasmuchastheoverall transmissivityofthepervasiverock.Regionalconductivefaultsparallel totheorogenpromotemountain?blockrechargeoversurfaceflow,assignificantlyasthicksystemsdo,andviceversa.Localscalefaultscanexertasmuchinfluenceasregionalfaultswhencrossingthecatchmentoutlet,highlightingtheimportanceoflocalheterogeneityinregionalflowdynamics.Intercatchmentflowisprimarilygovernedbylithologyandtopographyandismodulatedbythefaultpositionrelativetomajortopographicfeatures.Faultsinfluenceseepageareaswithinamulti?kilometerdistanceincharacteristicpatternsusefulforsegregatingtheireffectiverole.Byloweringthewatertable,conductivefaultssystematicallyreducetheseepageareas.Meanwhile,barriersdecreaseseepageareasdownstreamoftheirtraceandincreasethemupstream,withoutaffectingtheextentofseepage.Finally, thedistributionsofflowpathlengthsandresidencetimesareuncorrelated,highlightingtheimportanceofnumericalmodelingforgroundwaterdating