The Management of Power System Reliability in the Offshore Oil and Gas Field
Abstract
The reliability of electric power systems is needed in offshore oil and gas field operations because disruptions can have a direct impact on oil production, costs, and company profits.
Objectives: to determine the evaluation of reliability performance and propose a model for managing the power system reliability of the PHE OSES offshore oil and gas field.
Methodology: A case study with data collected through observation, interviews, and analysis of relevant documents.
Finding: Reliability in 2015-2016 has not reached the target but from 2017-2021 has reached the target of 97.5%, as well as availability in 2015, 2018, 2019 & 2020 has not reached the target but in 2016, 2017 & 2021 has reached the target of 95%. This resulted in the highest production losses in 2015 at 266,965 and the lowest in 2021 at 21,388 barrels of oil. The model is proposed by combining elements in risk-based asset management method, RCM method, and redesign.
Conclusion: In recent years, reliability has been on target but availability is volatile. The model is proposed to maintain reliability & availability on target so that production losses can be minimized.
Full Text:
PDFReferences
Ahmad, W., Hasan, O., Tahar, S., & Hamdi, M. S. (2018). Formal reliability analysis of oil and gas pipelines. Proceedings of the Institution of Mechanical Engineers, Part O: Journal of Risk and Reliability, 232(3), 320–334. https://doi.org/10.1177/1748006X17694494
Akashraj D P, & Maleith K D. (2020). The Impact of Ageing Facilities on Oil Production in South Sudan. International Journal of Research and Review (Ijrrjournal.Com), 7, 11.Apriyani, D., Nurmalina, R., & Burhanuddin, B. (2018). Evaluasi Kinerja Rantai Pasok Sayuran Organik Dengan Pendekatan Supply Chain Operation Reference (SCOR). MIX: Jurnal Ilmiah Manajemen, 8(2), 312-335. doi:http://dx.doi.org/10.22441/mix.2018.v8i2.008
Bharadwaj, U. R., Silberschmidt, V. v., & Wintle, J. B. (2012). A risk-based approach to asset integrity management. Journal of Quality in Maintenance Engineering, 18(4), 417–431. https://doi.org/10.1108/13552511211281570
Boateng, R., Lakeland, ·, Lakeland, E. ·, Nguyen, L., Agarwal, S., & Diego, S. (2003). Distribution Systems Reliability-Lakeland Electric Case Study.
Chafai, M., Refoufi, L., & Bentarzi, H. (2016). Large power transformer reliability modeling. International Journal of System Assurance Engineering and Management, 7, 9–17. https://doi.org/10.1007/s13198-014-0261-2
Chen, G., Zeng, J., & Hou, H. (2018). Reliability Assessment on Switchgear and Its Controller based on Time-Spatial-Source Dimension. 2018 China International Conference on Electricity Distribution.
Corvaro, F., Giacchetta, G., Marchetti, B., & Recanati, M. (2017). Reliability, Availability, Maintainability (RAM) study, on reciprocating compressors API 618. Petroleum, 3(2), 266–272. https://doi.org/10.1016/j.petlm.2016.09.002
de Sanctis, I., Paciarotti, C., & di Giovine, O. (2016). Integration between RCM and RAM: a case study. International Journal of Quality and Reliability Management, 33(6), 852–880. https://doi.org/10.1108/IJQRM-02-2015-0026
Firdaus, F., Y, Y., & Zakaria, R. (2018). Evaluasi Kinerja Sistem Rantai Pasokan Meja Tenis Meja Menggunakan Metode Supply Chain Operation Reference. MIX: Jurnal Ilmiah Manajemen, 8(3), 657-677. doi:http://dx.doi.org/10.22441/mix.2018.v8i3.013
Garg, A., & Deshmukh, S. G. (2006). Maintenance management: Literature review and directions. In Journal of Quality in Maintenance Engineering (Vol. 12, Issue 3, pp. 205–238). https://doi.org/10.1108/13552510610685075
Geisbush, J., & Ariaratnam, S. T. (2022). Reliability centered maintenance (RCM): literature review of current industry state of practice. Journal of Quality in Maintenance Engineering. https://doi.org/10.1108/JQME-02-2021-0018
Gulati, R. (2021). Maintenance and Reliability Best Practices. Industrial Press, Inc.
Hussin, H., Hashim, F. M., Ramli, O. H., & Ghazali, S. M. A. (2013). Maintainability analysis of an offshore gas compression train system, a case study. International Journal of Quality and Reliability Management, 30(5), 495–510. https://doi.org/10.1108/02656711311315486
Iftari, M., & Nugroho, R. (2016). Perbaikan Maintenance Untuk Target Availability Penyaluran Gas Dengan Pendekatan Total Productive Maintenance di PT PERTAMINA GAS Area Jawa Bagian Barat. MIX: Jurnal Ilmiah Manajemen, 5(2). Retrieved from https://publikasi.mercubuana.ac.id/index.php/Jurnal_Mix/article/view/616
Izzaidah, S. N. (2016). Reliability, Availability and Maintainability (RAM) Analysis for Offshore High-Pressure Compressor. Universiti Teknologi PETRONAS.
Khudyakov, V. v. (2011). Increasing the reliability of electric networks. In Russian Electrical Engineering (Vol. 82, Issue 9, pp. 455–459). https://doi.org/10.3103/S1068371211090070
Khuntia, S. R., Rueda, J. L., Bouwman, S., & van der Meijden, M. A. M. M. (2016). A literature survey on asset management in electrical power [transmission and distribution] system. International Transactions on Electrical Energy Systems, 26(10), 2123–2133. https://doi.org/10.1002/etep.2193
Kurniawan, R., Hasibuan, S., & Nugroho, R. (2017). Analisis Kriteria dan Proses Seleksi Kontraktor Chemical Sektor Hulu Migas: Aplikasi Metode Delphi-AHP. MIX: Jurnal Ilmiah Manajemen, 7(2). Retrieved from https://publikasi.mercubuana.ac.id/index.php/Jurnal_Mix/article/view/1622/1245
Lundteigen, M. A., & Rausand, M. (2009). Reliability Assessment of Safety Instrumented Systems in the Oil and Gas Industry: A Practical Approach and A Case Study. In International Journal of Reliability, Quality and Safety Engineering (Vol. 16, Issue 2). www.worldscientific.com
Martinek, Z., Hromadka, A., & Hammerbauer, J. (2017). Reliability characteristics of power plants. Advances in Electrical and Electronic Engineering, 15(1), 37–45. https://doi.org/10.15598/aeee.v15i1.2043
Moubray, J. (1997). Reliability-centered Maintenance. Butterworth-Heinemann.
Munirah, M. S., Libriati, Z., Nordin, Y., & Norhazilan, M. N. (2019). Prioritization of the human health and safety loss factor subject to offshore pipeline accidents. IOP Conference Series: Earth and Environmental Science, 220(1). https://doi.org/10.1088/1755-1315/220/1/012031
Naseri, M., & Barabady, J. (2014). SPE-170826-MS Application of Fuzzy Set Theory and Expert Judgement in Reliability Analysis of the Arctic Oil and Gas Facilities.
Naseri, M., & Barabady, J. (2016). An expert-based model for reliability analysis of arctic oil and gas processing facilities. Journal of Offshore Mechanics and Arctic Engineering, 138(5). https://doi.org/10.1115/1.4033932
Omoya, O. A., Papadopoulou, K. A., & Lou, E. (2019). Reliability engineering application to pipeline design. International Journal of Quality and Reliability Management, 36(9), 1644–1662. https://doi.org/10.1108/IJQRM-09-2017-0197
Palakodeti, S. R., Raju, P. K., & Guo, H. (2020). A dynamic process for evaluating the reliability of fossil power plant assets. Engineering Reports, 2(12). https://doi.org/10.1002/eng2.12277
Pinchukov, P., & Makasheva, S. (2018). Improving Methods for Reliability Assessment of Electric Power Systems. Advances in Intelligent Systems and Computing, 692, 162–169. https://doi.org/10.1007/978-3-319-70987-1_17
Rajpal, P. S., Shishodia, K. S., & Sekhon, G. S. (2006). An artificial neural network for modeling reliability, availability and maintainability of a repairable system. Reliability Engineering and System Safety, 91(7), 809–819. https://doi.org/10.1016/j.ress.2005.08.004
Ramos A, M., López Droguett, E., Mosleh, A., & das Chagas Moura, M. (2020). A human reliability analysis methodology for oil refineries and petrochemical plants operation: Phoenix-PRO qualitative framework. Reliability Engineering and System Safety, 193. https://doi.org/10.1016/j.ress.2019.106672
Rausand, M. (1998). Reliability centered maintenance. In Reliability Engineering and System Safety (Vol. 60).
Ruan, W. C., Yao, Y., Ouyang, X. D., Zeng, G. W., Su, C., & Xia, Z. Q. (2020, September 6). Study on the reliability of 10kV uninterrupted maintenance outgoing switchgear under the condition of main device switching to the back-up device. 7th IEEE International Conference on High Voltage Engineering and Application, ICHVE 2020 - Proceedings. https://doi.org/10.1109/ICHVE49031.2020.9279716
SMRP. (2017). SMRP Best Practices (5th ed.).
Sutawijaya, A., & Marlapa, E. (2016). Supply Chain Management: Analisis dan Penerapan Menggunakan Reference (SCOR) di PT. INDOTURBINE. MIX: Jurnal Ilmiah Manajemen, 6(1). Retrieved from https://publikasi.mercubuana.ac.id/index.php/Jurnal_Mix/article/view/870
Tang, Y., Zou, Z., Jing, J., Zhang, Z., & Xie, C. (2015). A framework for making maintenance decisions for oil and gas drilling and production equipment. Journal of Natural Gas Science and Engineering, 26, 1050–1058. https://doi.org/10.1016/j.jngse.2015.07.038
Tien, D. V., Gono, R., & Leonowicz, Z. (2018). Reliability Evaluation of the Distribution Systems Using Analytical Technique.
Tripathi, S., & Srivastava, A. (2018). Best Practices for Improving the Reliability of Power Electronic Assets in a large Oil and Gas Facility. Proceedings of 2018 IEEE International Conference on Power Electronics, Drives and Energy Systems (PEDES).
Zakikhani, K., Nasiri, F., & Zayed, T. (2020). Availability-based reliability-centered maintenance planning for gas transmission pipelines. International Journal of Pressure Vessels and Piping, 183. https://doi.org/10.1016/j.ijpvp.2020.104105
Zhang, J. (2012). Research and summary on reliability of relay protection system. Advanced Materials Research, 433–440, 6755–6759. https://doi.org/10.4028/www.scientific.net/AMR.433-440.6755
DOI: http://dx.doi.org/10.22441//jurnal_mix.2023.v13i1.014
Refbacks
- There are currently no refbacks.
MIX: Jurnal Ilmiah Manajemen
Journal URL: http://publikasi.mercubuana.ac.id/index.php/Jurnal_Mix
Journal DOI: 10.22441/jurnal_mix
P-ISSN: 2088-1231
E-ISSN: 2460-5328
Editor's Address:
Magister Management Department, Universitas Mercu Buana.
Tedja Buana Building 4th Floor.
Jl. Menteng Raya No. 29, Jakarta 10340.
The Journal is Indexed and Abstracting by: