Alternative methods for energy optimization and reuse in rod pumping systems in the oil industry: a bibliometric study
DOI:
https://doi.org/10.19180/2177-4560.v15n12021p99-124Keywords:
Mechanical rod pumping system. Bibliometry. Oil wells.Abstract
The oil extraction process consumes a lot of electricity and this increases production costs. The mechanical rod pumping system represents about 85% of the lifting system used in the production of onshore oil fields. This article aims to investigate what is being discussed about alternative methods for energy optimization and energy reuse for these systems. For this, a bibliometric study was conducted to investigate the relationship between energy reuse and mechanical pumping units with rods in the oil industry. The number of published articles found was very small, which suggests a subject that still lacks much research. Even so, it was possible to identify some trends in studies, such as the insertion of springs in the system to store elastic potential energy, in addition to following the discussion on effective forms of energy recycling, whose development suggests the evaluation of secondary energy sources and the use of renewable energy sources as steps to be taken. It was possible to understand that studies in this area are projected to increase and that some new systems are already being tested.Downloads
References
ALI, M. M., ADEWUMI, A.O., BLAMAH, N., FALOWO, O. Mathematical Modeling and Optimization of Industrial Problems. Journal of Applied Mathematics, Vol. 2015, p. 1–3, 2015.
ARAÚJO, C. A. A. Bibliometria: evolução histórica e questões atuais. Em Questão, v. 12, n. 1, p. 11–32, 10 dez. 2006.
ARTYKAEVA, E.M., GENIN, V.S., NESTERIN, V.A. Prospects for advancement in the energy efficiency of oil-producing sucker rod pumps, 82(10), 513–517, 2011.
BRETAS, W.V. Inteligência Empresarial a partir da Mineração de dados em bases internacionais de patentes. 2018. Dissertação de Mestrado – Instituto Federal de Educação, Ciência e Tecnologia Fluminense, Programa de Pós-graduação em Sistemas Aplicados à Engenharia e Gestão, Campos dos Goytacazes, Rio de Janeiro, 2018.
CEN, X., WU, X., GAO, S. Two Techniques for Reducing Sucker-Rod Loads in Deep Wells. Chemistry and Technology of Fuels and Oils, 51(4), 371–378, 2015.
COSTA, R.O. Unidade de bombeio eólica. Depositante: Petróleo Brasileiro S/A - Petrobrás. Procurador: Seldon Parkes. BR nº PI 9911533-6 B1. Depósito: 24 de fevereiro de 1999. Concessão: 06 de junho de 2006.
GALVÃO, H.L.C., OLIVA, G.B.F.F., SILVA, R.E., COSTA, R.O., MAITELLI, A.L., MAITELLI, C.W.S.P. Development and Application of a Control Strategy for Sucker Rod Pump Artificial Oil Lift System. IEEE Latin America Transactions, 16(8), p. 2177–2183, 2018.
GRANT, D.W, YEH, W.C Hybrid Water Pump. Senior Project - Electrical Engineering Department, California Polytechnic State University, San Luis Obispo, 2017.
GURGEL, O.P. Unidade de bombeio para extração de petróleo dotado de contrapeso dinâmico alimentado por energia solar ou eólica. Depositante: Omar Pereira Gurgel. Procurador: Vilage Marcas e Patentes LTDA. BR nº 102013014012 – A2. Depósito: 06 de junho de 2013. Concessão: 23 de setembro de 2014.
HAN, G., ZHANG, H., LING, K. (2016). The optimization approach of casing gas assisted rod pumping system. Journal of Natural Gas Science and Engineering, Vol. 32(), p. 205–210, 2016.
HANSEN, B., TOLBERT, B., VERNON, C., HEDENGREN, J. D. Model Predictive Automatic Control of Sucker Rod Pump System with Simulation Case Study. Computers & Chemical Engineering, Vol. 121, p. 265-284, 2018.
JIANG, Z., ZHANG, D., ZI, B., CUI, G., DING, H. The Sucker Rod Pump Parameters Optimization of Horizontal Wells with ASP Flooding Considering the Influence of Centralizers. MATEC Web of Conferences, Vol. 77, 01026, 2016.
LI, K., HAN, Y. Modelling for motor load torque with dynamic load changes of beam pumping units based on a serial hybrid model. Transactions of the Institute of Measurement and Control, 40(3):903-917, 2016.
LV, H., LIU, J., HAN, J., JIANG, A. An Energy Saving System for a Beam Pumping Unit. Sensors, 16(5), 685, 2016.
MENG, H.J., QUAN, L., WANG, Z., WANG, C.W., Lan, Y. An energy-saving pumping system with novel springs energy storage devices: Design, modeling, and experiment. Advances in Mechanical Engineering, 9(1), p. 1-11, 2017.
MIHELCIC, J. R., NAUGHTON, C. C., VERBYLA, M. E., ZHANG, Q., SCHWEITZERA, R. W., OAKLEY, S. M., WHITEFORD, L. M. The Grandest Challenge of All: The Role of Environmental Engineering to Achieve Sustainability in the World’s Developing Regions. Environmental Engineering Science, 34(1), p. 16–41, 2017.
OSARETIN, C.A., IQBAL, T., BUTT, S. Optimal sizing and techno-economic analysis of a renewable power system for a remote oil well. AIMS Electronics and Electrical Engineering, 4(2), 132-153, 2020.
PERIÓDICOS CAPES/MEC, 2020. URL: https://www.periodicos.capes.gov.br/ index.php?option=com_pcontent&view=pcontent&alias=missao-objetivos&Itemid=109 (Acesso em 01 de outubro de 2020).
PINHEIRO, H.H.C., NORONHA, T.B.P., SEGUNDO, H.A.M., NETO, R.J.O., ROCHA, A.V.C., FARIAS, K.S.O. Desenvolvimento de Regiões Produtoras de Petróleo Através da Utilização de Energia Eólica na Elevação Artificial de Petróleo. VII CONNEPI Congresso Norte Nordeste de Pesquisas de Inovação – Palmas, Tocantins (2012).
SHEDID, S. A. Technical and economical optimization of the performance of sucker rod pumping system." International Journal of Petroleum Science and Technology, p. 97, 2012.
SUDITU, S., STOICA, M. E., CRISTESCU, T. Factors Influencing the Enhancement of Energy Efficiency in the Oil and Gas Industry. MATEC Web of Conferences, 290, 10007, 2019.
VELYCHKOVVCH, A., PETRYK, I., ROPYAK, L. (2020). Analytical Study of Operational Properties of a Plate Shock Absorber of a Sucker-Rod String. Shock and Vibration, 1–7, 2020.
YU, Y., CHANG, Z., QI, Y., XUE, X., ZHAO, J. Study of a new hydraulic pumping unit based on the offshore platform. Energy Science & Engineering, 4(5), 352–360, 2016.
ZHANG, A., GAO, X. Fault diagnosis of sucker rod pumping systems based on Curvelet Transform and sparse multi-graph regularized extreme learning machine. International Journal of Computational Intelligence Systems, Volume 11, Issue 1, pages 428-437, 2018.
ZHANG, C., WANG, L., LI, H. Experiments and Simulation on a Late-Model Wind-Motor Hybrid Pumping Unit. Energies, 13(4), 994, 2020.
Downloads
Published
Issue
Section
License
The authors of the manuscript submitted to Boletim do Observatório Ambiental Alberto Ribeiro Lamego, hereby represented by the corresponding author, agree to the following terms:
The authors retain the copyright and grant Boletim do Observatório Ambiental Alberto Ribeiro Lamego the right of first publication.
At the same time the work is licensed under the Creative Commons Attribution 4.0 International License, allowing third parties to copy and redistribute the material in any medium or format and to remix, transform, and build upon its content for any legal purpose, even commercially, provided the original work is properly cited.
Authors will not receive any material reward for the manuscript and Essentia Editora will make it available online in Open Access mode, through its own system or other databases.
Authors are authorized to enter into additional contracts separately for non-exclusive distribution of the version of the work published in Boletim do Observatório Ambiental Alberto Ribeiro Lamego (eg, publish in institutional repository or as book chapter), with acknowledgment of authorship and initial publication in this journal.
Authors are permitted and encouraged to publish and distribute their work online (eg, in institutional repositories or on their personal page) at any point after the first publication of the article by Boletim do Observatório Ambiental Alberto Ribeiro Lamego.
Essentia Editora may make normative, orthographic and grammatical changes in the originals in order to maintain the standard language, with the final consent of the authors.
The content and opinions expressed in the manuscript are the sole responsibility of the author (s).