<efrbr:recordSet xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:efrbr="http://vfrbr.info/efrbr/1.1" xmlns:efrbr-work="http://vfrbr.info/efrbr/1.1/work" xmlns:efrbr-expression="http://vfrbr.info/efrbr/1.1/expression" xmlns:efrbr-manifestation="http://vfrbr.info/efrbr/1.1/manifestation" xmlns:efrbr-person="http://vfrbr.info/efrbr/1.1/person" xmlns:efrbr-corporateBody="http://vfrbr.info/efrbr/1.1/corporateBody" xmlns:efrbr-concept="http://vfrbr.info/efrbr/1.1/concept" xmlns:efrbr-structure="http://vfrbr.info/efrbr/1.1/structure" xmlns:efrbr-responsible="http://vfrbr.info/efrbr/1.1/responsible" xmlns:efrbr-subject="http://vfrbr.info/efrbr/1.1/subject" xmlns:efrbr-other="http://vfrbr.info/efrbr/1.1/other" xsi:schemaLocation="http://vfrbr.info/efrbr/1.1 http://vfrbr.info/schemas/1.1/efrbr.xsd"><efrbr:entities><efrbr-work:work identifier="http://purl.tuc.gr/dl/dias/A47870E6-6C03-46AB-80D9-67372B8426CF"><efrbr-work:titleOfTheWork>Advanced numerical methods for modeling pressure maintenance strategies during secondary and tertiary oil recovery in stratified petroleum reservoirs</efrbr-work:titleOfTheWork></efrbr-work:work><efrbr-expression:expression identifier="http://purl.tuc.gr/dl/dias/A47870E6-6C03-46AB-80D9-67372B8426CF"><efrbr-expression:titleOfTheExpression>Advanced numerical methods for modeling pressure maintenance strategies during secondary and tertiary oil recovery in stratified petroleum reservoirs</efrbr-expression:titleOfTheExpression><efrbr-expression:formOfExpression vocabulary="DIAS:TYPES">
            Μεταπτυχιακή Διατριβή
            Master Thesis
         </efrbr-expression:formOfExpression><efrbr-expression:dateOfExpression type="issued">2018-02-16</efrbr-expression:dateOfExpression><efrbr-expression:dateOfExpression type="published">2018</efrbr-expression:dateOfExpression><efrbr-expression:languageOfExpression vocabulary="iso639-1">en</efrbr-expression:languageOfExpression><efrbr-expression:summarizationOfContent>The current thesis focuses on the numerical modeling of pore-to-ﬁeld scale couplings in hydrodynamic dispersion and immiscible ﬂows in porous media using the standard ﬁnite element framework provided by the commercially available software COMSOL Multiphysics.

The single-phase ﬂow is handled through the study of hydrodynamic dispersion during an ideal tracer injection by using COMSOL’s readily available Physics interfaces. The coeﬃcient of hydrodynamic dispersion is explicitly calculated through rigorous pore-scale simulations in 2D porous domains and from the results obtained, a homogeneous model for porous media is deﬁned using the calculated eﬀective transport properties. The upscaling from the pore-scale to the REV-scale as far as transport properties of the porous medium are concerned is evaluated through the hydrodynamic dispersion coeﬃcient and an appropriate volume-averaged expression of the mass conservation equation. Results indicated that statistical properties conveniently derived at the REV-scale, can successfully be used for the precise calculation of pore-scale transport properties.

The two-phase incompressible ﬂow during a waterﬂooding oil recovery process in a stratiﬁed petroleum reservoir is simulated via two numerical models; one that includes the gravitational terms and one that omits them. The equations of the mathematical ﬂow model are derived under speciﬁc assumptions and formulated according to the fractional ﬂow approach. The PDE modes in the general and coeﬃcient form for time dependent analysis are utilized for their numerical implementation in COMSOL Multiphysics.
An appropriate, numerically stable, formulation of the black oil model is then used for the simulation of two-phase compressible ﬂow during a waterﬂooding process in an undersaturated petroleum reservoir. The model is based on the oil phase pressure and total velocity formulation. Its implementation in COMSOL is made with the time-dependent PDE interfaces.

The physical models of the waterﬂooding processes are also implemented in ECLIPSE 100 simulator and the results from the two simulators are compared so as to evaluate the performance of the newly-developed COMSOL PDE modules in quantifying and interpreting relevant physical phenomena. The results from the incompressible ﬂuid ﬂow modeling revealed that both COMSOL models are generally in good agreement with ECLIPSE 100 as far as recovery is concerned, with the COMSOL model that neglects the gravity exhibiting a better matching. The results obtained from the implemented formulation of the black oil model are also very close to the ones from ECLIPSE 100 regarding hydrocarbons production rates. That indicates that COMSOL Multiphysics can eﬃciently be used as a trustworthy tool in hydrocarbons recovery predictions and also for the solution of more complex physics phenomena in reservoir simulation problems.</efrbr-expression:summarizationOfContent><efrbr-expression:useRestrictionsOnTheExpression type="creative-commons">http://creativecommons.org/licenses/by-nc-nd/4.0/</efrbr-expression:useRestrictionsOnTheExpression><efrbr-expression:note type="academic unit">Πολυτεχνείο Κρήτης::Σχολή Μηχανικών Ορυκτών Πόρων</efrbr-expression:note></efrbr-expression:expression><efrbr-manifestation:manifestation identifier="http://purl.tuc.gr/dl/dias/19293C3C-DF1D-409E-9883-5E328D61F75F"><efrbr-manifestation:titleOfTheManifestation>Dollari_Anastasia_MSc_2018.pdf</efrbr-manifestation:titleOfTheManifestation><efrbr-manifestation:publicationDistribution><efrbr-manifestation:placeOfPublicationDistribution type="distribution">Chania [Greece]</efrbr-manifestation:placeOfPublicationDistribution><efrbr-manifestation:publisherDistributor type="distributor">Library of TUC</efrbr-manifestation:publisherDistributor><efrbr-manifestation:dateOfPublicationDistribution>2018-02-16</efrbr-manifestation:dateOfPublicationDistribution></efrbr-manifestation:publicationDistribution><efrbr-manifestation:formOfCarrier>application/pdf</efrbr-manifestation:formOfCarrier><efrbr-manifestation:extentOfTheCarrier>3.3 MB</efrbr-manifestation:extentOfTheCarrier><efrbr-manifestation:accessRestrictionsOnTheManifestation>free</efrbr-manifestation:accessRestrictionsOnTheManifestation></efrbr-manifestation:manifestation><efrbr-person:person identifier="http://users.isc.tuc.gr/~adollari"><efrbr-person:nameOfPerson vocabulary="TUC:LDAP">
            Dollari Anastasia
            Δολλαρη Αναστασια
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            Kalogerakis Nikos
            Καλογερακης Νικος
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            Chatzichristos, Christos
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            Gaganis Vasileios
            Γαγανης Βασιλειος
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            Πολυτεχνείο Κρήτης
            Technical University of Crete
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            Petroleum engineering
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