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dc.contributor.authorBigdeli, Alireza-
dc.contributor.authorBarroso, Matheus Lemos-
dc.contributor.authorLima, Ivens da Costa Menezes-
dc.contributor.authorMarcondes, Francisco-
dc.contributor.authorSepehrnoori, Kamy-
dc.date.accessioned2022-01-26T12:30:51Z-
dc.date.available2022-01-26T12:30:51Z-
dc.date.issued2021-
dc.identifier.citationBIGDELI, Alireza; BARROSO, Matheus Lemos; LIMA, Ivens da Costa Menezes; MARCONDES, Francisco; SEPEHRNOORI, Kamy. Application of sequential explicit coupling of reservoir, well, and surface facilities for 3D compositional simulation models. In: JOINT IBERO-LATIN-AMERICAN CONGRESS ON COMPUTATIONAL METHODS IN ENGINEERING-CILAMCE, XLII.; PAN-AMERICAN CONGRESS ON COMPUTATIONAL MECHANICS-PANACM, ABMEC-IACM, III., 9-12nov. 2021., Rio de Janeiro, Brazil. Proceedings[...], Rio de Janeiro, Brazil, 2021.pt_BR
dc.identifier.issn2675-6269-
dc.identifier.urihttp://www.repositorio.ufc.br/handle/riufc/63687-
dc.description.abstractThe assessment of hydrocarbon production systems requires the utilization of a simulator with the capability of handling different scenarios, such as the simulation of fluid flow in porous media and also in pipelines, at steady-state and unsteady-state conditions. Recently, there have been efforts in the development of reliable simulators, which are capable of accurately modeling surface and subsurface environments simultaneously through the usage of flow tables. In this paper, first, we discuss the importance of nodal analysis and different wellbore boundary conditions. Based on the foregoing, we introduce a new approach for our in-house simulator UTCOMPRS. The new approach further extends the previously developed flow table algorithms for 3D reservoir models. We also compare the results of two case studies with a commercial compositional simulator. The operational parameters, such as bottom hole pressure, injection pressure, oil, gas, and water rates, among others, are in good agreement with both UTCOMPRS and the commercial simulator. Herein, we also show the importance of controlling well constraints. The results showed that the developed framework was successfully implemented and validated for 3D reservoirs. It enables the simulator to handle more realistic conditions, advancing its flexibility and providing an infrastructure for the coupling of the reservoir, well, and surface facilities.pt_BR
dc.language.isopt_BRpt_BR
dc.publisherhttps://cilamce.com.br/anais/index.php?ano=2021pt_BR
dc.subjectSurface Facilitypt_BR
dc.subjectCoupling of the reservoirpt_BR
dc.subjectwells, and surface facilitieSpt_BR
dc.subject3D Compositional reservoir simulationpt_BR
dc.subjectFlow tablespt_BR
dc.titleApplication of Sequential Explicit Coupling of Reservoir, Well, and Surface Facilities for 3D Compositional Simulation Modelspt_BR
dc.typeArtigo de Eventopt_BR
dc.title.enApplication of Sequential Explicit Coupling of Reservoir, Well, and Surface Facilities for 3D Compositional Simulation Modelspt_BR
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