Generalized TaylorAris moment analysis of the transport of sorbing solutes through porous media with spatiallyperiodic retardation factor

dc.contributor.authorChrysikopoulos Constantinosen
dc.contributor.authorΧρυσικοπουλος Κωνσταντινοςel
dc.contributor.authorPaul V. Robertsen
dc.contributor.authorPeter K. Kitanidisen
dc.date.accessioned2024-10-31T15:06:19Z
dc.date.available2024-10-31T15:06:19Z
dc.date.issued1992
dc.date.submitted2015-09-21
dc.description.abstractTaylor-Aris dispersion theory, as generalized by Brenner, is employed to investigate the macroscopic behavior of sorbing solute transport in a three-dimensional, hydraulically homogeneous porous medium under steady, unidirectional flow. The porous medium is considered to possess spatially periodic geochemical characteristics in all three directions, where the spatial periods define a rectangular parallelepiped or a unit-element. The spatially-variable geochemical parameters of the solid matrix are incorporated into the transport equation by a spatially-periodic distribution coefficient and consequently a spatially-periodic retardation factor. Expressions for the effective or large-time coefficients governing the macroscopic solute transport are derived for solute sorbing according to a linear equilibrium isotherm as well as for the case of a first-order kinetic sorption relationship. The results indicate that for the case of a chemical equilibrium sorption isotherm the longitudinal macrodispersion incorporates a second term that accounts for the eflect of averaging the distribution coefficient over the volume of a unit element. Furthermore, for the case of a kinetic sorption relation, the longitudinal macrodispersion expression includes a third term that accounts for the effect of the first-order sorption rate. Therefore, increased solute spreading is expected if the local chemical equilibrium assumption is not valid. The derived expressions of the apparent parameters governing the macroscopic solute transport under local equilibrium conditions agreed reasonably with the results of numerical computations using particle tracking techniques.en
dc.description.journalnumber2
dc.description.journalvolume7
dc.description.pagerange163-185
dc.format.extent24 pagesen
dc.identifier10.1007/BF00647395
dc.identifier.citationC. V. Chrysikopoulos ,P. K. Kitanidis, P.V. Roberts ,"Generalized TaylorAris moment analysis of the transport of sorbing solutes through porous media with spatiallyperiodic retardation factor ", Transp. in Po.Media ,vol. 7 ,no.2 , pp.163-185, 1992.doi:10.1007/BF00647395en
dc.identifier.urihttps://dspace.library.tuc.gr/handle/123456789/314
dc.language.isoen
dc.publisherKluwer Academic Publishersen
dc.relation.isreferencedbyTransport in Porous Mediael
dc.relation.replaces11202
dc.rightshttp://creativecommons.org/licenses/by/4.0/en
dc.subjectRate-limited sorbing solute transporten
dc.subjectEffective macroscopic coefficientsen
dc.titleGeneralized TaylorAris moment analysis of the transport of sorbing solutes through porous media with spatiallyperiodic retardation factoren
dc.typePeer-Reviewed Journal Publicationen
dc.typeΔημοσίευση σε Περιοδικό με Κριτέςel
dspace.entity.typePublication

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