Derleme
BibTex RIS Kaynak Göster

Nijerya petrol ve gaz endüstrisinde akışkanlar mekaniğinin uygulamalarına ilişkin bir derleme

Yıl 2025, Cilt: 2 Sayı: 1, 32 - 42, 26.06.2025

Öz

Akışkanlar mekaniği, hidrokarbonların verimli bir şekilde çıkarılması, taşınması ve işlenmesinin akışkan akışının etkin yönetimine bağlı olduğu Nijerya petrol ve gaz endüstrisinde kritik bir rol oynamaktadır. Bu derleme, sondaj operasyonları, rezervuar mühendisliği, boru hattı taşımacılığı, geliştirilmiş petrol geri kazanımı ve açık deniz operasyonlarındaki akışkanlar mekaniğinin çeşitli uygulamalarını incelemektedir. Çalışma, sondaj çamuru dolaşımı, rezervuar basıncı yönetimi ve çok fazlı akış sistemlerinde akışkan davranışının önemini vurgulamaktadır. Ayrıca, yapay kaldırma sistemleri, ayırma işlemleri ve gaz yakma optimizasyonunda akışkan dinamiğinin rolüne dikkat çekmektedir. Hesaplamalı Akışkanlar Dinamiği (CFD), gerçek zamanlı akış izleme ve akıllı sensörler gibi ileri teknolojiler, endüstrinin karmaşık akışkan sistemlerini yönetme yeteneğini daha da artırmıştır. Boru hattı bütünlüğü, akış güvencesi ve basınç düşüşü yönetimi gibi temel zorluklar, operasyonel verimliliği ve çevresel sürdürülebilirliği artırmaya yönelik yenilikçi çözümlerle birlikte ele alınmaktadır. İnceleme, endüstriye özgü zorlukların üstesinden gelmek için araştırma ve geliştirmeye, iş gücü eğitimine ve modern teknolojilerin benimsenmesine sürekli yatırım yapılması gerektiğinin altını çizmektedir. Akışkanlar mekaniği ilkelerinden yararlanarak Nijerya petrol ve gaz sektörü, üretkenliği artırabilir, operasyonel riskleri azaltabilir ve çevresel etkiyi en aza indirerek sürdürülebilir ekonomik büyümeye katkıda bulunabilir. Bu çalışma, petrol ve gaz endüstrisinde akışkan yönetimi uygulamalarını optimize etmeyi amaçlayan mühendisler, araştırmacılar ve politika yapıcılar için değerli bir kaynak niteliğindedir.

Kaynakça

  • Akujuru, Kelvin., Nnadikwe, Johnson., James, Richard V. (2024). Exploring cutting-edge application of computational fluid dynamics in enhancing and innovation within the oil and gas sector. International Advanced Research Journal in Science, Engineering and Technology, 11(3), 1-8.
  • Norman, L., Johnson. (2023). Exploring cutting-edge application of computational fluid dynamics in enhancing and innovation within the oil and gas sector. Preprints, 2023(12), 1-13.
  • Osgouei, A.E., Altun, G. (2013). A review of application of computational fluid dynamics in prediction of oil and gas wells problems. Proceedings of the 74th EAGE Conference and Exhibition, 380, 43-50.
  • Jinjiang, Xiao., Rafael, Lastra., Shoubo, Wang. (2016). Fluid driven commingling system for oil and gas applications. Petroleum Science and Engineering, 12(4), 245-252.
  • Morrow, T.B. Horii, K., Elger, D.F., Marshall, I.R. (1994). Industrial and environmental applications of fluid mechanics 1994. FED, 186, 1-15.
  • Elemer, Bobok. (1993). Fluid Mechanics for Petroleum Engineers. Elsevier.
  • Dalton, C., Denison, E. (1975). Fluid mechanics in the petroleum industry. Journal of Petroleum Technology, 27(4), 78-84.
  • Tobias, R., Gessner., Jader, R., Barbosa. (2023). Fluid flow in oil production systems. Petroleum Engineering Journal, 45(2), 120-132.
  • Adeniyi, O.D., Nwalor, J.U., Ako, C.T.. (2008). A review on waterflooding problems in Nigeria's crude oil production. Journal of Dispersion Science and Technology, 29(4), 520-530.
  • Ranald, V., Giles., Jack, B., Evett., Cheng, Liu. (2014). Fluid Mechanics and Hydraulics. McGraw-Hill Education.
  • Charles, M.E. (1977). Fluid mechanics and resource development. Canadian Journal of Chemical Engineering, 55(4), 325-334.
  • Ranald, V., Giles., Jack, B., Evett., Cheng, Liu. (2014). Fluid mechanics and hydraulics. Lecture Notes in Civil Engineering, 25, 75-90.
  • Robert, D., Grace. (2017). Fluid dynamics in well control. Well Engineering Journal, 38(7), 450-462.
  • Mirza, A., Dadash-Zade., Ru, Cao. (2024). Fluid mechanics of gas-liquid systems. Academic Journal of Science and Technology, 17(2), 301-312.
  • Ojo, O.T. (2023). Petrophysical and geomechanical analysis to delineating reservoirs in the Miocene Niger Delta region of Nigeria. Geomechanics Journal, 19(3), 215-228.
  • Attoni, S., Nwonodi, C., Chukwuemeka. N. (2024). Effect of oil-based drilling fluid contamination on gas condensates fluid properties. Case study of a deepwater reservoir in Niger Delta, Nigeria. SPE Conference Proceedings, 221674, 1-12.
  • Ali, Shokor., Golam., Mohammed, H., Alhamdo., Hassan, A., Abdul, Hussein., Sinan, I., Mohammed. (2022). Application of computational fluid dynamics for investigation the effect of the hole cleaning parameters in inclined and horizontal wells. Journal of Petroleum Research and Studies, 12(4), 456-467.
  • Ludovic, Raynal., Frederic, Augier., Frederic, Bazer-Bachi., Yacine, Haroun., C., Pereira, da, Fonte. (2016). CFD applied to process development in the oil and gas industry – A review. Oil & Gas Science and Technology – Revue d’IFP Energies nouvelles, 71(4), 1-14.
  • Jerome, Asedegbega., Dorcas, S., Eyinla., Michael, A., Oladunjoye., A., I., Opara., A., F., Nwakanma. (2023). A robust static model for geo-mechanical characterisation and drilling optimisation in offshore Niger Delta Basin, Nigeria. SPE Conference Proceedings, 32309, 1-10.
  • Ogunkunle, Temitope, Fred., V., Damilola, Abraham., Afolabi, Richard, Oyekunle., Oriola, Opedamola. (2018). Comparative analysis of saturated and under-saturated oil viscosity correlations using statistical tools, Niger Delta case study. IOP Conference Series: Earth and Environmental Science, 173(1), 1-8.
  • Yisa, Adeeyo. (2019). Mathematical modelling of oil viscosity at bubble point pressure and dead oil viscosity of Nigerian crude. SPE Conference Proceedings, 198770, 1-9.
  • Shifeng, Yang., Jimin, Zhao., Siqi, Han., Xin, Shao., Ying, Zhang. (2023). Application of fluid mechanics in flow meter principle analysis and process simulation. Advances in Engineering Technology Research, 7(1), 486-495.
  • Talal, T., Al-Housseiny. (2014). Exploring fluid mechanics in energy processes: Viscous flows, interfacial instabilities & elastohydrodynamics. Energy Journal, 15(6), 220-232.

A Review on the applications of fluid mechanics in oil and gas industries in Nigeria

Yıl 2025, Cilt: 2 Sayı: 1, 32 - 42, 26.06.2025

Öz

Fluid mechanics plays a pivotal role in the Nigerian oil and gas industry, where efficient extraction, transportation, and processing of hydrocarbons depend on the effective management of fluid flow. This review explores the diverse applications of fluid mechanics in drilling operations, reservoir engineering, pipeline transportation, enhanced oil recovery, and offshore operations. The study highlights the importance of fluid behavior in drilling mud circulation, reservoir pressure management, and multiphase flow systems. Additionally, it emphasizes the role of fluid dynamics in artificial lift systems, separation processes, and gas flaring optimization. Advanced technologies such as Computational Fluid Dynamics (CFD), real-time flow monitoring, and smart sensors have further enhanced the industry's ability to manage complex fluid systems. Key challenges, including pipeline integrity, flow assurance, and pressure drop management, are discussed alongside innovative solutions aimed at improving operational efficiency and environmental sustainability. The review underscores the need for continuous investment in research and development, workforce training, and the adoption of modern technologies to address industry-specific challenges. By leveraging fluid mechanics principles, the Nigerian oil and gas sector can enhance productivity, reduce operational risks, and minimize environmental impact, contributing to sustainable economic growth. This study serves as a valuable resource for engineers, researchers, and policymakers seeking to optimize fluid management practices in the oil and gas industry.

Kaynakça

  • Akujuru, Kelvin., Nnadikwe, Johnson., James, Richard V. (2024). Exploring cutting-edge application of computational fluid dynamics in enhancing and innovation within the oil and gas sector. International Advanced Research Journal in Science, Engineering and Technology, 11(3), 1-8.
  • Norman, L., Johnson. (2023). Exploring cutting-edge application of computational fluid dynamics in enhancing and innovation within the oil and gas sector. Preprints, 2023(12), 1-13.
  • Osgouei, A.E., Altun, G. (2013). A review of application of computational fluid dynamics in prediction of oil and gas wells problems. Proceedings of the 74th EAGE Conference and Exhibition, 380, 43-50.
  • Jinjiang, Xiao., Rafael, Lastra., Shoubo, Wang. (2016). Fluid driven commingling system for oil and gas applications. Petroleum Science and Engineering, 12(4), 245-252.
  • Morrow, T.B. Horii, K., Elger, D.F., Marshall, I.R. (1994). Industrial and environmental applications of fluid mechanics 1994. FED, 186, 1-15.
  • Elemer, Bobok. (1993). Fluid Mechanics for Petroleum Engineers. Elsevier.
  • Dalton, C., Denison, E. (1975). Fluid mechanics in the petroleum industry. Journal of Petroleum Technology, 27(4), 78-84.
  • Tobias, R., Gessner., Jader, R., Barbosa. (2023). Fluid flow in oil production systems. Petroleum Engineering Journal, 45(2), 120-132.
  • Adeniyi, O.D., Nwalor, J.U., Ako, C.T.. (2008). A review on waterflooding problems in Nigeria's crude oil production. Journal of Dispersion Science and Technology, 29(4), 520-530.
  • Ranald, V., Giles., Jack, B., Evett., Cheng, Liu. (2014). Fluid Mechanics and Hydraulics. McGraw-Hill Education.
  • Charles, M.E. (1977). Fluid mechanics and resource development. Canadian Journal of Chemical Engineering, 55(4), 325-334.
  • Ranald, V., Giles., Jack, B., Evett., Cheng, Liu. (2014). Fluid mechanics and hydraulics. Lecture Notes in Civil Engineering, 25, 75-90.
  • Robert, D., Grace. (2017). Fluid dynamics in well control. Well Engineering Journal, 38(7), 450-462.
  • Mirza, A., Dadash-Zade., Ru, Cao. (2024). Fluid mechanics of gas-liquid systems. Academic Journal of Science and Technology, 17(2), 301-312.
  • Ojo, O.T. (2023). Petrophysical and geomechanical analysis to delineating reservoirs in the Miocene Niger Delta region of Nigeria. Geomechanics Journal, 19(3), 215-228.
  • Attoni, S., Nwonodi, C., Chukwuemeka. N. (2024). Effect of oil-based drilling fluid contamination on gas condensates fluid properties. Case study of a deepwater reservoir in Niger Delta, Nigeria. SPE Conference Proceedings, 221674, 1-12.
  • Ali, Shokor., Golam., Mohammed, H., Alhamdo., Hassan, A., Abdul, Hussein., Sinan, I., Mohammed. (2022). Application of computational fluid dynamics for investigation the effect of the hole cleaning parameters in inclined and horizontal wells. Journal of Petroleum Research and Studies, 12(4), 456-467.
  • Ludovic, Raynal., Frederic, Augier., Frederic, Bazer-Bachi., Yacine, Haroun., C., Pereira, da, Fonte. (2016). CFD applied to process development in the oil and gas industry – A review. Oil & Gas Science and Technology – Revue d’IFP Energies nouvelles, 71(4), 1-14.
  • Jerome, Asedegbega., Dorcas, S., Eyinla., Michael, A., Oladunjoye., A., I., Opara., A., F., Nwakanma. (2023). A robust static model for geo-mechanical characterisation and drilling optimisation in offshore Niger Delta Basin, Nigeria. SPE Conference Proceedings, 32309, 1-10.
  • Ogunkunle, Temitope, Fred., V., Damilola, Abraham., Afolabi, Richard, Oyekunle., Oriola, Opedamola. (2018). Comparative analysis of saturated and under-saturated oil viscosity correlations using statistical tools, Niger Delta case study. IOP Conference Series: Earth and Environmental Science, 173(1), 1-8.
  • Yisa, Adeeyo. (2019). Mathematical modelling of oil viscosity at bubble point pressure and dead oil viscosity of Nigerian crude. SPE Conference Proceedings, 198770, 1-9.
  • Shifeng, Yang., Jimin, Zhao., Siqi, Han., Xin, Shao., Ying, Zhang. (2023). Application of fluid mechanics in flow meter principle analysis and process simulation. Advances in Engineering Technology Research, 7(1), 486-495.
  • Talal, T., Al-Housseiny. (2014). Exploring fluid mechanics in energy processes: Viscous flows, interfacial instabilities & elastohydrodynamics. Energy Journal, 15(6), 220-232.
Toplam 23 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Esnek İmalat Sistemleri
Bölüm Derlemeler
Yazarlar

Dıckson Davıd Olodu 0000-0003-3383-2543

Francis Inegbedion 0000-0002-2142-8079

Osagie Imevbore Ihenyen 0000-0003-4499-7845

Yayımlanma Tarihi 26 Haziran 2025
Gönderilme Tarihi 8 Ocak 2025
Kabul Tarihi 5 Şubat 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 2 Sayı: 1

Kaynak Göster

EndNote Olodu DD, Inegbedion F, Ihenyen OI (01 Haziran 2025) A Review on the applications of fluid mechanics in oil and gas industries in Nigeria. International Journal of Engineering Approaches 2 1 32–42.