Please use this identifier to cite or link to this item: http://repositorio.uptc.edu.co/handle/001/2981
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dc.contributor.advisorVillarreal Celis, Jaime Orlando (Director de tesis)spa
dc.contributor.authorCelis Castellanos, Enmanuel-
dc.date.accessioned2019-12-13T15:11:24Z-
dc.date.available2019-12-13T15:11:24Z-
dc.date.issued2019-
dc.identifier.citationCelis Castellanos, E. (2019). Estudio de optimización de costos de inhibición de corrosión e incrustaciones en planta de producción de hidrocarburos livianos. (Tesis de Especialización). Universidad Pedagógica y Tecnológica de Colombia, Bogotá. http://repositorio.uptc.edu.co/handle/001/2981spa
dc.identifier.urihttp://repositorio.uptc.edu.co/handle/001/2981-
dc.description1 recurso en línea (30 páginas) : tablas, figuras.spa
dc.description.abstractEl trabajo presenta la metodología y los resultados de la evaluación del desempeño de productos químicos inhibidores de corrosión e incrustación, dentro de un proceso “best-in-class” para optimización de tratamientos químicos dosificados para control de integridad en planta de producción de hidrocarburos livianos.spa
dc.format.mimetypeapplication/pdfspa
dc.language.isospaspa
dc.publisherUniversidad Pedagógica y Tecnológica de Colombiaspa
dc.rightsCopyright (c) 2019 Universidad Pedagógica y Tecnológica de Colombiaspa
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0/spa
dc.subject.otherInhibidores químicos-
dc.subject.otherProductos del petróleo-
dc.titleEstudio de optimización de costos de inhibición de corrosión e incrustaciones en planta de producción de hidrocarburos livianosspa
dc.typeTrabajo de grado - Especializaciónspa
dc.description.notesBibliografía: páginas 29-30spa
dc.rights.accessrightsinfo:eu-repo/semantics/openAccessspa
dc.type.coarhttp://purl.org/coar/resource_type/c_7a1fspa
dc.type.driverinfo:eu-repo/semantics/bachelorThesisspa
dc.type.versioninfo:eu-repo/semantics/publishedVersionspa
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dc.relation.referencesAPI MPMS 12.1.1. (2012). Calculation of Static Petroleum Quantities, Upright Cylindrical Tanks and Marine Vessels. Manual of Petroleum Measurement Standards, API.spa
dc.relation.referencesAPI MPMS 14.3.1. (2012). Orifice Metering of Natural Gas and Other Related Hydrocarbon Fluids—Concentric Square-Edged Orifice Meters, Part 1: General Equations and Uncertainty Guidelines. Manual of Petroleum Measurement Standards, API.spa
dc.relation.referencesAPI RP 14E. (1991). Recommended Practice for Design and Installation of Offshore Production Platform Piping System. American Petroleum Institute, 23.spa
dc.relation.referencesASTM G1-03. (2017). Standard Practice for Preparing, Cleaning, and Evaluating Corrosion Test Specimens. ASTM International.spa
dc.relation.referencesASTM G46-94. (2018). Guide for Examination and Evaluation of Pitting Corrosion. ASTM International.spa
dc.relation.referencesASTM G111-97. (2018). Standard Guide for Corrosion Tests in High Temperature or High-Pressure Environment, or Both. ASTM International.spa
dc.relation.referencesASTM G170-06. (2012). Standard Guide for Evaluating and Qualifying Oilfield and Refinery Corrosion Inhibitors in the Laboratory. ASTM International.spa
dc.relation.referencesDEP 31.22.05.11-Gen. (2007). Gas /Liquid Separators - Type Selection and Design Rules. Shell Global Solutions International B.V, Netherlands.spa
dc.relation.referencesHalvorsen, E., Koren, A., Ramstad, K., Tydal, T., Biornstad, C. (2006). Scale Inhibitor Testing for Multiphase Pipelines in a Subsea to Shore Development with a Closed MEG-loop System. SPE International Oilfield Scale Symposium SPE-100662-MSspa
dc.relation.referencesIge, O.O., Barker, R., Hua, X., Umoru, L.E., Neville, A. (2013). Assessing the influence of Shear stress and particle impingement on inhibitor efficiency through the application of in-situ electrochemistry in a CO2-saturated environment. Wear, 304, 49-59.spa
dc.relation.referencesLi, W., Pots, B.F.M., Brown, B., Kee, K.E., Nesic, S. (2016). A direct measurement of wall shear stress in multiphase flow—Is it an important parameter in CO2 corrosion of carbon steel pipelines? Corrosion Science, 110, 35-45.spa
dc.relation.referencesNACE Publication 31105. (2005). Dynamic Scale Inhibitor Evaluation Apparatus and Procedures in Oil and Gas Production. NACE International.spa
dc.relation.referencesNACE SP0775. (2018) Preparation, Installation, Analysis and Interpretation of Corrosion Coupons in Oilfield Operations. NACE Internationalspa
dc.relation.referencesPapavinasam, S., (2000). Evaluation and Selection of Corrosion Inhibitors. Uhlig's Corrosion Handbook, 2nd Edition, 1169-117.spa
dc.relation.referencesSilverman, D.C., (1984). Rotating Cylinder Electrode for Velocity Sensitivity Testing. Corrosion, 40, 220-226.spa
dc.relation.referencesWalsh, F.C., Kear, G., Nahlé A.H., Wharton, J.A., Arenas, L.F. (2017). The Rotating Cylinder Electrode for Studies of Corrosion Engineering and Protection of Metals. Corrosion Science, 123, 1-20spa
dc.rights.creativecommonsAtribución-NoComercial-SinDerivadas 4.0 Internacional (CC BY-NC-ND 4.0)spa
dc.subject.armarcCorrosión y anticorrosivos-
dc.subject.armarcCorrosión y anticorrosivos - Control-
dc.subject.armarcHidrocarburos-
dc.subject.armarcEspecialización en Gestión de Integridad y Corrosión - Tesis y disertaciones académicas-
dc.description.degreelevelEspecializaciónspa
dc.description.degreenameEspecialista en Gestión de Integridad y Corrosiónspa
dc.publisher.departmentEscuela de Posgradosspa
dc.publisher.facultyFacultad de Ingenieríaspa
dc.publisher.programEspecialización en Gestión de Corrosión e Integridadspa
dc.type.contentTextspa
dc.type.redcolhttps://purl.org/redcol/resource_type/TPspa
oaire.versionhttp://purl.org/coar/version/c_970fb48d4fbd8a85spa
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