Publicado

2019-10-01

Simulation of the operation of a natural gas transport system based on a criterion of minimum operating cost

Simulación de la operación de un sistema de transporte de gas natural basada en un criterio de mínimo costo operativo

DOI:

https://doi.org/10.15446/dyna.v86n211.78983

Palabras clave:

natural gas, transportation systems, optimization, operating costs (en)
gas natural, sistemas de transporte, optimización, costos operativos (es)

Autores/as

In this article, a simulation model of a natural gas transport network based on the minimization of its operating costs was developed. For this, a system of equations that determine these costs and the conditions that characterize it are established, to later be transformed into a system that can easily be solved by common linear programming methods. A system of equations and matrices resulting from a transport network of few elements is presented as an example. The model is applied in the simulation of the future operation of the Colombian natural gas transport network to project the cost of its operation, section flows, its associated tariffs, and shortage level. Finally, the conclusions derive possible use applications of this model for the analysis of natural gas transport networks and other energy systems.

En este artículo se desarrolla un modelo de simulación de una red de transporte de gas natural basado en la minimización de sus costos operativos.  Para esto se establece un sistema de ecuaciones que determinan el mencionado costo y las condiciones que lo caracterizan, para después transformarlo en un sistema que pueda ser resuelto fácilmente mediante métodos comunes de programación lineal.  Se presenta como ejemplo el sistema de ecuaciones y matrices resultante de una red de transporte de pocos elementos.  El modelo es aplicado en la simulación de la operación futura de la red colombiana de transporte de gas natural a fin de proyectar el costo de su operación, flujos en sus tramos, tarifas asociadas y nivel de desabastecimiento.  Finalmente, en las conclusiones se derivan posibles aplicaciones del uso de este modelo para análisis de redes de transporte de gas natural y otros energéticos.

Referencias

Colombia. Unidad de Planeación Minero Energética -UPME, "Plan Transitorio de Abastecimiento de Gas Natural," [Online]. Available: http://www1.upme.gov.co/Hidrocarburos/publicaciones/Plan_Transitorio_Abastecimiento_Gas_Natural.pdf . [Accessed 15 Agosto 2018].

Colombia. Ministerio de Minas y Energía., "Declaración de Producción de Gas Natural.," [Online]. Available: https://www.minminas.gov.co/declaracion-de-produccion-de-gas-natural. [Accessed 15 Agosto 2018].

Colombia. Comisión de Regulación de Energía y Gas -CREG., "Estructura Tarifaria del Gas Natural," [Online]. Available: http://www.creg.gov.co/index.php/es/sectores/gas-natural/tarifas-gas. [Accessed 15 Agosto 2018].

S. Osorio Ruiz and Y. Olaya Morales, "Análisis del Comercio Entre Colombia y Venezuela," Dyna, vol. 78, no. 167, pp. 27-35, 2011.

United States. Energy Information Agency., "Annual Energy Outlook 2018. Table: Natural Gas Supply, Disposition, and Prices," [Online]. Available: https://www.eia.gov/outlooks/aeo/data/browser/#/?id=13-AEO2018&region=0-0&cases=ref2018~highprice~lowprice&start=2016&end=2050&f=A&linechart=ref2018-d121317a.31-13-AEO2018~highprice-d122017a.31-13-AEO2018~lowprice-d121317a.31-13-AEO2018&map=&ctype=linecha. [Accessed 15 Octubre 2018].

Colombia. Ministerio de Minas y Energía, "Cobertura Nacional de Gas Natural," [Online]. Available: https://www.minminas.gov.co/cobertura-nacional1. [Accessed 10 Enero 2019].

Bolsa Mercantil de Colombia. Gestor del Mercado de Gas Natural en Colombia, "Energía Inyectada," [Online]. Available: http://www.bmcbec.com.co/informaci%C3%B3n-operativa/energ%C3%ADa-inyectada/. [Accessed 10 Enero 2019].

Colombia. Unidad de Planeación Minero Energética -UPME, "Plan Transitorio de Abastecimiento de Gas Natural," [Online]. Available: http://www.sipg.gov.co/Inicio/SectorHidrocarburos/Proyecciones/tabid/125/language/es-ES/Default.aspx. [Accessed 15 Agosto 2018].

Colombia. Agencia Nacional de Hidrocarburos, "Informe de Recursos y Reservas.," [Online]. Available: http://www.anh.gov.co/Operaciones-Regalias-y-Participaciones/Paginas/Sistema-Integrado-de-Reservas.aspx. [Accessed 15 Agosto 2018].

National Oceanic and Atmospheric Administration. National Weather Service., "Cold & Warm Episodes by Season.," [Online]. Available: http://origin.cpc.ncep.noaa.gov/products/analysis_monitoring/ensostuff/ONI_v5.php.

M. X. Goemans, "Carnegie Mellon University. Linear Programming Curse.," [Online]. Available: http://www.cs.cmu.edu/afs/cs/user/glmiller/public/Scientific-Computing/F-11/RelatedWork/Goemans-LP-notes.pdf.

A. Brauer, "Techno-economic optimisation of large natural gas transmission systems," Gas for Energy, no. 4, pp. 24-33, 2016.

X. Wu, C. Li, Y. He and W. Jia, "Operation Optimization of Natural Gas Transmission Pipelines Based on Stochastic Optimization Algorithms: A Review," Hindawi. Mathematical Problems in Engineering, no. Article ID 1267045, pp. 1-18, 2018.

C. Borraz-Sánchez, "Optimization Methods for Pipeline Transportation of Natural Gas," Octubre 2010. [Online]. Available: http://www.ii.uib.no/~conrado/publications/Papers/PhD-Thesis-Conrado-Borraz.pdf. [Accessed 07 Julio 2018].

A. Sedliak and T. Zacik, "Optimization of the Gas Transport in Pipeline Systems," Tatra Mountains Mathematical Publications, no. 66, pp. 103-120, 2016.

Cómo citar

IEEE

[1]
J. F. Andrade Mahecha y G. I. Massy Sánchez, «Simulation of the operation of a natural gas transport system based on a criterion of minimum operating cost», DYNA, vol. 86, n.º 211, pp. 308–316, oct. 2019.

ACM

[1]
Andrade Mahecha, J.F. y Massy Sánchez, G.I. 2019. Simulation of the operation of a natural gas transport system based on a criterion of minimum operating cost. DYNA. 86, 211 (oct. 2019), 308–316. DOI:https://doi.org/10.15446/dyna.v86n211.78983.

ACS

(1)
Andrade Mahecha, J. F.; Massy Sánchez, G. I. Simulation of the operation of a natural gas transport system based on a criterion of minimum operating cost. DYNA 2019, 86, 308-316.

APA

Andrade Mahecha, J. F. & Massy Sánchez, G. I. (2019). Simulation of the operation of a natural gas transport system based on a criterion of minimum operating cost. DYNA, 86(211), 308–316. https://doi.org/10.15446/dyna.v86n211.78983

ABNT

ANDRADE MAHECHA, J. F.; MASSY SÁNCHEZ, G. I. Simulation of the operation of a natural gas transport system based on a criterion of minimum operating cost. DYNA, [S. l.], v. 86, n. 211, p. 308–316, 2019. DOI: 10.15446/dyna.v86n211.78983. Disponível em: https://revistas.unal.edu.co/index.php/dyna/article/view/78983. Acesso em: 8 mar. 2026.

Chicago

Andrade Mahecha, Jaime Fernando, y Grigory Ibrahim Massy Sánchez. 2019. «Simulation of the operation of a natural gas transport system based on a criterion of minimum operating cost». DYNA 86 (211):308-16. https://doi.org/10.15446/dyna.v86n211.78983.

Harvard

Andrade Mahecha, J. F. y Massy Sánchez, G. I. (2019) «Simulation of the operation of a natural gas transport system based on a criterion of minimum operating cost», DYNA, 86(211), pp. 308–316. doi: 10.15446/dyna.v86n211.78983.

MLA

Andrade Mahecha, J. F., y G. I. Massy Sánchez. «Simulation of the operation of a natural gas transport system based on a criterion of minimum operating cost». DYNA, vol. 86, n.º 211, octubre de 2019, pp. 308-16, doi:10.15446/dyna.v86n211.78983.

Turabian

Andrade Mahecha, Jaime Fernando, y Grigory Ibrahim Massy Sánchez. «Simulation of the operation of a natural gas transport system based on a criterion of minimum operating cost». DYNA 86, no. 211 (octubre 1, 2019): 308–316. Accedido marzo 8, 2026. https://revistas.unal.edu.co/index.php/dyna/article/view/78983.

Vancouver

1.
Andrade Mahecha JF, Massy Sánchez GI. Simulation of the operation of a natural gas transport system based on a criterion of minimum operating cost. DYNA [Internet]. 1 de octubre de 2019 [citado 8 de marzo de 2026];86(211):308-16. Disponible en: https://revistas.unal.edu.co/index.php/dyna/article/view/78983

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CrossRef Cited-by

CrossRef citations2

1. Sergio Cabrales, Carlos Valencia, Carlos Ramírez, Andrés Ramírez, Juan Herrera, Angela Cadena. (2022). Stochastic cost-benefit analysis to assess new infrastructure to improve the reliability of the natural gas supply. Energy, 246, p.123421. https://doi.org/10.1016/j.energy.2022.123421.

2. Abubakar Jibrin Abbas, Hossein Hassani, Martin Burby, Idoko Job John. (2021). An Investigation into the Volumetric Flow Rate Requirement of Hydrogen Transportation in Existing Natural Gas Pipelines and Its Safety Implications. Gases, 1(4), p.156. https://doi.org/10.3390/gases1040013.

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