Vol. 5 No. 2 (2006): Revista UIS Ingenierías
Articles

Modeling of a system of injection of water current (sicp)

Oscar Fabian Morantes Delgado
Universidad Industrial de Santander
Bio
Hernann Raúl Vargas Torres
Universidad Industrial de Santander
Bio
Jairo Humberto Guzmán Mejia
lCP ECOPETROL
Bio

Published 2006-06-16

Keywords

  • Heavy Oils,
  • Impedance's Spectrum,
  • Lift Factor,
  • Energy Optimization

How to Cite

Morantes Delgado, O. F., Vargas Torres, H. R., & Guzmán Mejia, J. H. (2006). Modeling of a system of injection of water current (sicp). Revista UIS Ingenierías, 5(2), 205–212. Retrieved from https://revistas.uis.edu.co/index.php/revistauisingenierias/article/view/1731

Abstract

This article presents a system that improves the mobility through the gradient control of temperature of asphalts present in the heavy oils of great abundance in Colombia and gigantic energetic reserves at global level. The SICP system is constituted by a rectificator, switch and a control system in closed loop which takes a census of variables in well's bottom, for the controlled current injection. It was required to create models for the joining impedance of the system with the well's face and the transfer of the power through the tubing. The SICP uses the energy product of the optimization from the pumping systems by reducing the viscosity, lost by friction and other related problems of the heavy oils in ascent. In the same way, it tries to improve the production with a superior lift factor, as well as the reduction of the associated costs to the maintenance and production's stops due to obstructions in the extraction system.

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References

Caruso G. Coloquio Centro para Estudios Estratégicos e Intemacionales (CSIS), de Washington, Agencia para la Administración Energética EIA, EE.UU., junio 2006

Cáceres O. Proyecto: Alternativas para el Tratamiento y Transporte de Crudos Pesados,, Colciencias- ICPECOPETROL 2005

Rodriguez, M. Castañeda Estudio de los fenómenos de cristalización de
parafinas en el comportamiento fluido dinámico de crudos para finicos-fasel. ECOPETROL- Instituto Colombiano del Petróleo, A. A. 4185 Buca-ramanga, Santander, Colombia

Trans., AIME. El efecto de la temperatura sobre la densidad y la resistividad eléctrica del Cloruro de Sodio en soluciones. (1953) 198327-28.

Knight, R. J. Nur, A., and Raistrick I. D. Modelado de la Respuesta Eléctrica de Arenisca Mediante un Circuito Eléctrico, 26th Simposio Anual de Registros, 1985

Knight, R. J. Nur, A., and Raistrick I. D. La Constante Dieléctrica de la Arenisca entre 60kHz a 4MHz, Geophysics 52, 644-654, 1987

Cole, K. S., Y Cole R. S. Dispersión y absorción en dieléctricos, 1941, Alternation current characteristics: 3. Chem. Phys. 9, pg. 341- 351.

XiangJ, Jones N. Cheng D, Schlindwein F. Direct inversion of the apparent complex-resistivity spectrurn. Geophysics, Vol 66 NO 29, 2003, pp 647-654.

[9]MirandaD.Trabajodeinvestigación(MagisterInge-nieríaElectrónica).UniversidadIndustrialdeSantander.IngenieríasFisicomecánicas.IngenieríadeElectrónica.Bucaramanga.2005.

[10]QuimónS,QiningF.yZuoyuanS.Electricalimpedancevariationwithwatersaturationin rack,;2000,GeophysicsVol.65pg68-75.

John R., Frederick J., Robert W. Foundations of Electromagnetic Theory, 2003.

Bridges, J. Dubiel, G. Power sources for down hole electrical heating. Patente 2015318. Oficina de Patentes de Canadá

Bridges, J. COI Tosion Inhibition Methods and apparatus for down hole electrical heating in mineral fluid wells. Patente 2012328. Oficina de Patentes de Canadá

Bridges, J. Electrical Heating Systems for low costretrofitting of oil wells. Patent 2090629. Oficij1.a de Patentes de Canadá

Hagedom, Alton R. Oil recovery by combination steam stimulation and electrical heating. Patente 3946809. Oficina de Patentes de los Estados Unidos.

Killoughand, J. E. And Gonz.lez. A Fully-hnplicit Model for Electric. lIy Enhanced Oil Recovery.,J. A. SPE 15605. 1986.

McPherson R., Chute F. y Vermeulen F. Recovery of Ath. basc. bitumen with! he Electromagnetic Flood (EMF) process, 1985 The Journal Petroleum Canadi.n January Febru.ry pg 44-51.

Kreith, FranJe. Principios De Transferencia De Calor. Mexico Thomson Leaming, 2001.

PDVSA, Fundamentos de ingeniería de petróleos, Venezuela, 2005.

Eirich, Frederick R. Rheology; Theory AndA pplications. New York: Academic Press, 1960.

Rothrock R. Jr. Maintenance, Work over Coststo Top $3Billon, Petroleum Engineer Intern.tiona!. Julio USA 1978.

Grigorahshtsento G. General Features of lhe Technological Developments in Oil Production. Rusia Julio 1976.

Moody L. Friction Factors for Pipe Flow, Transactions of American Society of Mechanical Engineers Vol 66 USA 1964

Carozzi A, Erikson A, Lundborg B y Thidé B. Electromagnetic Field Theory. Swedish Institute of Space Physics, 2003.

Ovalles c., Fonseca A., Lara A., Alvarado V., Ranson A., Mendoza H.(SPE). Opportunities of Down hole Dielectric Heating in Venezuela: Three Case Studies Involving Medium, Heavy and Extra Heavy Crude Oil Reservoirs. PDVSA- INTEVEP, Venezuela 2002

Generld C. Common Sense Approach to Thermal Imaging. SPIE Oplical Engineering Press, USA 2000.

ONU Naciones Unidas. World Population Prospects: The 2000 Revision Hig Wights, USA (2001).

Priddle R. Ex. Director Agencia para la Administración Energética EIA, World Energy Outlook. EE.UU. 2000.

Takács G. Bombeo Mecánico Moderno. USA 1990.

Beal C. The viscosit yofair ,Natural Gas, Crude Oil and its Associated Gasesat Oil field Temperatures and Pressures, Transactions of American Institute of Mining and Metallurgical Engineers Vol. 165, USA 1946.