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Purpose: The study aims to investigate the hydraulic efficiency of gas gathering pipelines of the Yuliivskyi oil and gas condensate production facility (OGCPF). Identify the main factors that lead to a decrease in the hydraulic efficiency of gas gathering pipelines. Design/methodology/approach: The modes of operation of gas gathering pipelines were studied experimentally at gas treatment units. Calculations determined the volume of liquid contaminants in the internal cavity of gas gathering pipelines. Industrial studies were conducted to measure the volume of transported gas and liquid contaminants entering the flow. A comparison of the obtained values makes it possible to assess objectively the presence of liquid contaminants in the internal cavity of gas gathering pipelines. Findings: Based on the results of studies of the gas gathering pipelines' hydraulic efficiency, it was found that the volume of liquid contamination determined by calculations is less than that determined by the results of industrial studies. The main factors that adversely affect the hydraulic efficiency of gas gathering pipelines have been identified. Timely monitoring of these main factors will help prevent a decrease in the hydraulic efficiency of gathering pipelines and a decrease in the volume of transported gas. Implementing a system for monitoring the efficiency of gas gathering pipelines will allow timely measures to be taken and prevent a decrease in gas transportation. Research limitations/implications: To improve the efficiency of gas gathering pipeline operation, it is advisable to introduce new approaches to timely prediction of complications, particularly developing and implementing various control systems. Practical implications: The performed studies make it possible to objectively assess the reasons for the decrease in the hydraulic efficiency coefficient of gas gathering pipelines, which will make it possible to predict it to prevent a decrease in the volume of transported gas. Originality/value: It is proposed to use a system for monitoring the efficiency of gas gathering pipelines. Applying this approach generally ensures the efficiency of analysing the state of gas gathering pipelines and timely action.
Wydawca
Rocznik
Tom
Strony
69--85
Opis fizyczny
Bibliogr. 26 poz., rys., tab., wykr.
Twórcy
autor
- Branch R&D Institute of Gas Transportation Joint Stock Company “Ukrtransgaz”, 16 Koneva St., Kharkiv, Ukraine
autor
- Department of Records Management and Information Activities, Institute of Humanities and Public Administration, Ivano-Frankivsk National Technical University of Oil and Gas, 15 Karpatska St., Ivano-Frankivsk, Ukraine
autor
- Department of Energy Management and Technical Diagnostics, Institute of Architecture, Construction and Power Engineering, Ivano-Frankivsk National Technical University of Oil and Gas, 15 Karpatska St., Ivano-Frankivsk, Ukraine
autor
- Department of Oil and Gas Pipelines and Storage Facilities, Institute of Petroleum Engineering, Ivano- Frankivsk National Technical University of Oil and Gas, 15 Karpatska St., Ivano-Frankivsk, Ukraine
autor
- Branch Ukrainian Scientific Research Institute of Natural Gases Joint Stock Company “Ukrgasvydobuvannya”, 20 Himnaziina Naberezhna St., Kharkiv, Ukraine
autor
- Joint Stock Company “Ukrgasvydobuvannya”, 26/28 Kudriavska St., Kyiv, Ukraine
autor
- Joint Stock Company “Ukrgasvydobuvannya”, 26/28 Kudriavska St., Kyiv, Ukraine
Bibliografia
- [1] Ya.V. Doroshenko, G.М. Kogut, I.V. Rybitskyi, O.S. Tarayevs’kyy, T.Yu. Pyrig, Numerical investigation on erosion wear and strength of main gas pipelines bends, Physics and Chemistry of Solid State 22/3 (2021) 551- 560. DOI: https://doi.org/10.15330/pcss.22.3.551-560
- [2] Ya. Doroshenko, I. Rybitskyi, Investigation of the influence of the gas pipeline tee geometry on hydraulic energy loss of gas pipeline systems, Eastern-European Journal of Enterprise Technologies 1/8(103) (2020) 28-34. DOI: https://doi.org/10.15587/17294061.2020.192828
- [3] V.B. Volovetskyi, O.M. Shchyrba, O.Yu. Vytiaz, Ya.V. Doroshenko, Analysis of the reasons for hydraulic efficiency decrease in gas gathering pipelines and the ways of its increase, Prospecting and Development of Oil and Gas Fields 3/48 (2013) 147- 155 (in Ukrainian).
- [4] V.B. Volovetskyi, Ya.V. Doroshenko, G.M. Kogut, A.P. Dzhus, I.V. Rybitskyi, J.I. Doroshenko, O.M. Shchyrba, Investigation of gas gathering pipelines operation efficiency and selection of improvement methods, Journal of Achievements in Materials and Manufacturing Engineering 107/2 (2021) 59-74. DOI: https://doi.org/10.5604/01.3001.0015.3585
- [5] V.B. Volovetskyi, O.Yu. Vytiaz, O.M. Shchyrba, V.I. Kotsaba, N.M. Kotsaba, Study of the hydraulic efficiency of gas gathering pipeline from the GGS of the Narizhnianske GCF to the CGTU-2 of the Yuliivskiy OGCF, Prospecting and Development of Oil and Gas Fields 3/44 (2012) 158-165 (in Ukrainian).
- [6] V.B. Volovetskyi, Ya.V. Doroshenko, G.M. Kogut, I.V. Rybitskyi, J.I. Doroshenko, O.M. Shchyrba, Developing a complex of measures for liquid removal from gas condensate wells and flowlines using surfactants, Archives of Materials Science and Engineering 108/1 (2021) 24-41. DOI: https://doi.org/10.5604/01.3001.0015.0250
- [7] R. Kondrat, L. Matiishyn, Improving the efficiency of production wells at the final stage of gas field development, Mining of Mineral Deposits 16/2 (2022) 1-6. DOI: https://doi.org/10.33271/mining16.02.001
- [8] S. Matkivskyi, L. Khaidarova, Increasing the Productivity of Gas Wells in Conditions of High Water Factors, Proceedings of the SPE Eastern Europe Subsurface Conference “EESC 2021”, Kyiv, 2021. DOI: https://doi.org/10.2118/208564-MS
- [9] V.B. Volovetskyi, A.V. Uhrynovskyi, Ya.V. Doroshenko, O.M. Shchyrba, Yu.S. Stakhmych, Developing a set of measures to provide maximum hydraulic efficiency of gas gathering pipelines, Journal of Achievements in Materials and Manufacturing Engineering 101/1 (2020) 27-41. DOI: https://doi.org/10.5604/01.3001.0014.4088
- [10] V.B. Volovetskyi, Ya.V. Doroshenko, O.S. Tarayevs'kyy, O.M. Shchyrba, J.I. Doroshenko, Yu.S. Stakhmych, Experimental effectiveness studies of the technology for cleaning the inner cavity of gas gathering pipelines, Journal of Achievements in Materials and Manufacturing Engineering 105/2 (2021) 61-77. DOI: https://doi.org/10.5604/01.3001.0015.0518
- [11] V. Volovetskyi, Ya. Doroshenko, O. Karpash, O. Shсhyrba, S. Matkivskyi, O. Ivanov, H. Protsiuk, Experimental Studies of Efficient Wells Completion in Depleted Gas Condensate Fields by Using Foams, Strojnícky časopis – Journal of Mechanical Engineering 72/2 (2022) 219-238. DOI: https://doi.org/10.2478/scjme-2022-0031
- [12] R.M. Kondrat, A.V. Uhrynovskyi, O.S. Sendeha, V.Ye. Blizniakov, T.V. Potiatynnyk, Pilot testing technology to clean gas pipelines in Khidnovytske gas field, Scientific Bulletin of the National Mining University 1 (2018) 12-19 (in Ukrainian). DOI: http://doi.org/10.29202/nvngu/2018-1/16
- [13] M.I. Bratakh, I.M. Ruzina, A.V. Sobolieva, Dynamics of fluid formations in the cavity of the gas gathering pipeline, Problems of the development of the gas industry of Ukraine: Collection of scientific works XXXVII (2009) 287-293 (in Ukrainian).
- [14] V.V. Diachuk, V.K. Tikhomirov, V.N. Goncharov, I.I. Kaptsov, Cleaning gas pipelines with foam, Papirus, Odesa, Ukraine, 2002 (in Ukrainian).
- [15] Comprehensive project for the development of gas condensate and oil deposits of Skvortsivske OGCF, report on the R&D, under contract 100 HGV/2009-2009 (topic 51.215/2009-2009) (in Ukrainian).
- [16] Refined project of development of Narizhnianske OGCF (final), report on NDR, under contract 100 HGV /2010-2010 (topic 51.258/2010-2010).
- [17] V.S. Boiko, R.M. Kondrat, R.S. Yaremiichuk, Petroleum Engineering Handbook, Lviv, Ukraine, 1996 (in Ukrainian).
- [18] I.I. Kaptsov, G.O. Khomenko, M.I. Bratakh, The reasons for the increase in pressure drops along the route of gas pipelines of the gas production and collection system, Problems of the development of the gas industry of Ukraine: Collection of scientific works, XXIII (2005) 99-107.
- [19] M.I. Bratakh, V.G. Toporov, M.I. Fyk, Fundamentals of gas transport through gas gathering pipelines, Kharkiv, 2016.
- [20] M.M. Volkov, A.L. Mikheev, A.A. Konev, Handbook of a gas industry worker, 2 nd Edition revised with addition, M., 1989 (in Ukrainian).
- [21] A.D. Altschul, Hydraulic resistances, 2 nd Edition revised with addition, M., 1982 (in Ukrainian).
- [22] A.P. Melnyk, S.V. Kryvulya, V.A. Laktionov, D.O. Degtyarev, Study of the protective properties of corrosion inhibitors in the environments of technological equipment of the Yablunivskiy VPG, Oil and Gas Industry of Ukraine 6 (2018) 29-34.
- [23] NACE RP0775-2005 Preparation, Installation, Analysis and Interpretation of Corrosion Coupons in Oilfield Operation, Houston: NACE International, 2005.
- [24] V.B. Volovetskyi, Ya.V. Doroshenko, A.O. Bugai, G.M. Kogut, P.M. Raiter, Y.M. Femiak, R.V. Bondarenko, Developing measures to eliminate of hydrate formation in underground gas storages, Journal of Achievements in Materials and Manufacturing Engineering 111/2 (2022) 64-77. DOI: https://doi.org/10.5604/01.3001.0015.9996
- [25] V.B. Volovetskyi, Ya.V. Doroshenko, S.V. Matkivskyi, P.M. Raiter, O.M. Shchyrba, S.M. Stetsiuk, H.Ya. Protsiuk, Development of methods for predicting hydrate formation in gas storage facilities and measures for their prevention and elimination, Journal of Achievements in Materials and Manufacturing Engineering 117/1 (2023) 25-41. DOI: https://doi.org/10.5604/01.3001.0053.5955
- [26] V.B. Volovetskyi, Ya.V. Doroshenko, S.M. Stetsiuk, S.V. Matkivskyi, O.M. Shchyrba, Y.M. Femiak, G.M. Kogut, Development of foam-breaking measures after removing liquid contamination from wells and flowlines by using surface-active substances, Journal of Achievements in Materials and Manufacturing Engineering 114/2 (2022) 67-80. DOI: https://doi.org/10.5604/01.3001.0016.2157
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-cdb3b7d9-9b50-4ebb-8c95-8c0c9a8ccbcd
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