Relación entre las variables de proceso que intervienen en la explotación de yacimientos de petróleo y la precipitación de asfaltenos, con base en meta-análisis
| dc.contributor.advisor | López Suárez, Franz Edwin | |
| dc.coverage.spatial | Colombia | spa |
| dc.creator | Cardenas Romay, Dany Jose | |
| dc.date.accessioned | 2020-02-12T17:12:16Z | |
| dc.date.available | 2020-02-12T17:12:16Z | |
| dc.date.created | 2019 | |
| dc.description.abstract | A través del estudio de un conjunto de investigaciones empíricas independientes, se recolecto información cuantitativa relacionada al fenómeno de la precipitación de asfaltenos en yacimientos de petróleo con el fin de determinar las relaciones existentes entre las variables del proceso y la cantidad de asfaltenos precipitados. Para cumplir con este objetivo se inició con la búsqueda de información estadística en diversas investigaciones científicas que abordaron este tema. Posteriormente la información fue discriminada, codificada y evaluada según los criterios y pasos para la realización de un meta-análisis. El meta-análisis de la información permitió la correlación entre estudios y mediante la metodología de superficie de respuesta (MRS) se generó una ecuación polinómica que permite la estimación de asfaltenos precipitados a partir de la relación de dilución, presión, temperatura, masa molecular del disolvente, gravedad API y la composición del petróleo (relación resina-asfalteno (R/A)). En la etapa de prueba, el coeficiente de correlación (R2) fue superior a 0,9559 y la raíz cuadrática del error cuadrático medio (RMSE) fue de 0,0728. El efecto de las variables independientes sobre la precipitación de asfaltenos fue cuantificado mediante el análisis ANOVA, demostrando que, la relación de dilución (Rd) y el tipo de disolvente son los factores de mayor relevancia en comparación con los otros factores considerados en esta investigación. La validación de la ecuación obtenida se realizó mediante el estudio comparativo de la capacidad predictiva de la precipitación de asfaltenos en contraste con otras ecuaciones reportadas en la literatura. Palabras claves: meta-análisis, precipitación de asfaltenos, yacimientos de petróleo, metodología de superficie de respuesta. | spa |
| dc.description.abstractenglish | Through the study of a set of independent empirical research, quantitative information related to the phenomenon of precipitation of asphaltenes in oil fields was collected in order to determine the relationships between process variables and the amount of precipitated asphaltenes. To achieve this goal, was performed the search for statistical information in various scientific investigations that addressed this topic. Subsequently the information was discriminated, codified and evaluated according to the criteria and steps for conducting a meta-analysis. The meta-analysis of the information allowed the correlation between studies and by the response surface methodology (RSM) a polynomial equation was generated that allows the estimation of precipitated asphaltene as a function of the ratio of dilution, pressure, temperature, molecular mass of the solvent, API gravity and the composition of the oil (resin-asphaltene ratio (R/A)). At the test stage, the correlation coefficient (R2) was greater than 0.9559 and the quadratic root of the mean quadratic error (RMSE) was 0.0728. The effect of independent variables on the precipitation of asphaltenes was quantified by the ANOVA analysis, demonstrating that the dilution ratio (Rd) and the type of solvent are the most relevant factors compared to the other factors considered in this research. The validation of the obtained equation was performed by the comparative study of the predictive capacity of the precipitation of asphaltenes in contrast to other equations reported in the literature. | spa |
| dc.description.degreename | Magister en ingeniería de procesos y sistemas industriales | spa |
| dc.description.rda | Requerimientos de sistema: Adobe Acrobat Reader | spa |
| dc.format.extent | 176 páginas | spa |
| dc.format.mimetype | application/pdf | spa |
| dc.format.rda | 1 recurso en línea (archivo de texto) | spa |
| dc.identifier.instname | instname:Universidad de Bogotá Jorge Tadeo Lozano | spa |
| dc.identifier.reponame | reponame:Repositorio Institucional de la Universidad de Bogotá Jorge Tadeo Lozano | spa |
| dc.identifier.repourl | http://expeditio.utadeo.edu.co | spa |
| dc.identifier.uri | https://hdl.handle.net/20.500.12010/7398 | |
| dc.language.iso | spa | spa |
| dc.publisher | Universidad de Bogotá Jorge Tadeo Lozano | spa |
| dc.publisher.faculty | Facultad de Ciencias Naturales e Ingeniería | spa |
| dc.publisher.program | Maestría en ingeniería de procesos y sistemas industriales | spa |
| dc.relation.references | Abouie, Ali, Mohsen Rezaveisi, Saeedeh Mohebbinia, and Kamy Sepehrnoori. 2016. “Static and Dynamic Comparison of Equation of State Solid Model and PC-SAFT for Modeling Asphaltene Phase Behavior.” In SPE Western Regional Meeting, Society of Petroleum Engineers. | spa |
| dc.relation.references | Ahmadi, Mohammad Ali. 2011a. “Prediction of Asphaltene Precipitation by Using PSO-Neural Network.” Energy Sources, Part A: Recovery, Utilization, and Environmental Effects. | spa |
| dc.relation.references | ———. 2011b. “Prediction of Asphaltene Precipitation Using Artificial Neural Network Optimized by Imperialist Competitive Algorithm.” Journal of Petroleum Exploration and Production Technology 1(2–4): 99–106. | spa |
| dc.relation.references | Alayon, Mario. 2004. “Asfaltenos Ocurrencia y Floculación.” Cuaderno Firp S39-PP, Universidad de los Andes, Merida. | spa |
| dc.relation.references | Almehaideb, Reyadh A. 2004. “Asphaltene Precipitation and Deposition in the near Wellbore Region: A Modeling Approach.” Journal of Petroleum Science and Engineering 42(2–4): 157–70. | spa |
| dc.relation.references | Ameli, Forough, Abdolhossein Hemmati-Sarapardeh, Bahram Dabir, and Amir H Mohammadi. 2016. “Determination of Asphaltene Precipitation Conditions during Natural Depletion of Oil Reservoirs: A Robust Compositional Approach.” Fluid Phase Equilibria 412: 235–48. | spa |
| dc.relation.references | Amin, Javad Sayyad et al. 2018. “PT SC.” Chemical Engineering Research and Design. https://doi.org/10.1016/j.cherd.2018.12.026. | spa |
| dc.relation.references | Amin, Javad Sayyad, and Sepideh Alimohammadi. 2016. “Systematic Investigation of Asphaltene Precipitation by Experimental and Reliable Deterministic Tools †.” (July): 1–48. | spa |
| dc.relation.references | Amin, Javad Sayyad, Somayye Nikkhah, and Sohrab Zendehboudi. 2017. “A New Experimental and Modeling Strategy to Determine Asphaltene Precipitation in Crude Oil.” Chemical Engineering Research and Design 128: 162–73. | spa |
| dc.relation.references | Andersen, Simon I, and James G Speight. 1999. “Thermodynamic Models for Asphaltene Solubility and Precipitation.” Journal of Petroleum Science and Engineering 22(1–3): 53–66. | spa |
| dc.relation.references | Andersen, Simon Ivar, and Erling I I Stenby. 1996. “Thermodynamics of Asphaltene Precipitation and Dissolution Investigation of Temperature and Solvent Effects.” Fuel Science and Technology International 14(1–2): 261–87. | spa |
| dc.relation.references | Arya, Alay, Xiaodong Liang, Nicolas von Solms, and Georgios M Kontogeorgis. 2017. “Modeling of Asphaltene Precipitation from Crude Oil with the Cubic Plus Association Equation of State.” Energy & Fuels 31(2): 2063–75. | spa |
| dc.relation.references | Arya, Alay, Xiaodong Liang, Nicolas Von Solms, and Georgios M Kontogeorgis. 2016. “Modeling of Asphaltene Onset Precipitation Conditions with Cubic plus Association (CPA) and Perturbed Chain Statistical Associating Fluid Theory (PC-SAFT) Equations of State.” Energy & Fuels 30(8): 6835–52. | spa |
| dc.relation.references | Bagheri, M B et al. 2009. “Developing a New Scaling Equation for Modelling of Asphaltene Precipitation.” In Canadian International Petroleum Conference, Petroleum Society of Canada. | spa |
| dc.relation.references | Bezerra, Marcos Almeida et al. 2008. “Response Surface Methodology (RSM) as a Tool for Optimization in Analytical Chemistry.” Talanta 76(5): 965–77. | spa |
| dc.relation.references | Bilheimer, J S, B H Sage, and W N Lacey. 1949. “Multicondensate Phases in the N-Pentane–Tetralin–Butane System.” Trans. AIME 283. | spa |
| dc.relation.references | Boer, R B De et al. 1995. “Precipitation : Theory , Practice , and the Selection of Inhibitors.” (February): 55–61. | spa |
| dc.relation.references | Brown, Morton B, and Alan B Forsythe. 1974. “Robust Tests for the Equality of Variances.” Journal of the American Statistical Association 69(346): 364–67. | spa |
| dc.relation.references | Buckley, J. S. et al. 1998. “Asphaltene Precipitation and Solvent Properties 90 of Crude Oils.” Petroleum Science and Technology 16(3–4): 251–85. | spa |
| dc.relation.references | Buenrostro-Gonzalez, Eduardo, Carlos Lira-Galeana, Alejandro Gil-Villegas, and Jianzhong Wu. 2004. “Asphaltene Precipitation in Crude Oils: Theory and Experiments.” AIChE Journal 50(10): 2552–70. | spa |
| dc.relation.references | Buenrostro‐Gonzalez, Eduardo, Carlos Lira‐Galeana, Alejandro Gil‐Villegas, and Jianzhong Wu. 2004. “Asphaltene Precipitation in Crude Oils: Theory and Experiments.” AIChE Journal 50(10): 2552–70. | spa |
| dc.relation.references | Burke, Nancy E, Ronald E Hobbs, and Samir F Kashou. 1990. “Measurement and Modeling of Asphaltene Precipitation.” Journal of Petroleum Technology (November): 1440–1520. | spa |
| dc.relation.references | Carbognani, L, M Orea, and M Fonseca. 1999. “Complex Nature of Separated Solid Phases from Crude Oils.” Energy & fuels 13(2): 351–58. | spa |
| dc.relation.references | CARO, TEDDYS GUILLERMO OSPINO, and ESCUELA D E PROCESOS Y ENERGÍA. 2009. “Aspectos Generales Del Daño de Formación Por Depositación de Asfaltenos En Yacimientos de Petróleo.” Colombia-Medellin: Universidad Nacional de Colombia. | spa |
| dc.relation.references | Chamkalani, Ali et al. 2014. “Integration of LSSVM Technique with PSO to Determine Asphaltene Deposition.” Journal of Petroleum Science and Engineering 124: 243–53. | spa |
| dc.rights.accessrights | info:eu-repo/semantics/openAccess | spa |
| dc.rights.local | Abierto (Texto Completo) | spa |
| dc.subject | Meta-análisis | spa |
| dc.subject | Precipitación de asfaltenos | spa |
| dc.subject.keyword | Meta-analysis | spa |
| dc.subject.keyword | Precipitation of asphaltenes | spa |
| dc.subject.lemb | Diseño industrial | spa |
| dc.subject.lemb | Campos petrolíferos | spa |
| dc.subject.lemb | Campos petrolíferos - Métodos de producción | spa |
| dc.subject.lemb | Asfaltenos | spa |
| dc.title | Relación entre las variables de proceso que intervienen en la explotación de yacimientos de petróleo y la precipitación de asfaltenos, con base en meta-análisis | spa |
| dc.type.driver | info:eu-repo/semantics/masterThesis | spa |
| dc.type.hasversion | info:eu-repo/semantics/acceptedVersion | spa |
| dc.type.local | Trabajo de grado de maestría | spa |
