Approval of the technology of carbon dioxide injection into the V-16 water driven reservoir of the Hadiach field (Ukraine) under the conditions of the water pressure mode pages 1–2

The object of research is water-driven gas-condensate reservoirs. Using the main hydrodynamic modeling tools Eclipse and Petrel from Schlumberger (USA), the study was carried out to improve the existing technologies for the displacement of residual gas reserves by carbon dioxide from the water-drive...

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Main Authors: Serhii Krivulya, Serhii Matkivskyi, Oleksandr Kondrat, Efim Bikman
Format: Article
Language:English
Published: PC Technology Center 2020-12-01
Series:Technology Audit and Production Reserves
Subjects:
Online Access:http://journals.uran.ua/tarp/article/view/217780
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spelling doaj-85db819c95144be28992c60993cbb5622021-05-19T07:03:32ZengPC Technology CenterTechnology Audit and Production Reserves2664-99692706-54482020-12-0161(56)131810.15587/2706-5448.2020.217780205341Approval of the technology of carbon dioxide injection into the V-16 water driven reservoir of the Hadiach field (Ukraine) under the conditions of the water pressure mode pages 1–2Serhii Krivulya0https://orcid.org/0000-0003-2005-1828Serhii Matkivskyi1https://orcid.org/0000-0002-4139-1381Oleksandr Kondrat2https://orcid.org/0000-0003-4406-3890Efim Bikman3https://orcid.org/0000-0001-9781-7954Branch of JSC Ukrgasvydobuvannya Ukrainian Scientific-Research Institute of Natural Gas, 20, Himnaziyna embankment, Kharkiv, Ukraine, 61010Ivano-Frankivsk National Technical University of Oil and Gas, 15, Karpatska str., Ivano-Frankivsk, Ukraine, 76019 Ukrainian Scientific-Research Institute of Natural Gas, 20, Himnaziyna embankment, Kharkiv, Ukraine, 61010Ivano-Frankivsk National Technical University of Oil and Gas, 15, Karpatska str., Ivano-Frankivsk, Ukraine, 76019Ukrainian Scientific-Research Institute of Natural Gas, 20, Himnaziyna embankment, Kharkiv, Ukraine, 61010The object of research is water-driven gas-condensate reservoirs. Using the main hydrodynamic modeling tools Eclipse and Petrel from Schlumberger (USA), the study was carried out to improve the existing technologies for the displacement of residual gas reserves by carbon dioxide from the water-driven gas-condensate reservoirs. The carbon dioxide injection technology was tested in the V-16 reservoir of the Hadiach oil and gas condensate field (Ukraine). According to the study results, it was found that due to the injection of non-hydrocarbon gas, the cumulative water production are reduced compared to the depletion. Based on the obtained modeling results, the calculation of the predicted hydrocarbon recovery factors at the moment of carbon dioxide breakthrough into the production well was carried out according to the cumulative formation water production. According to the calculations, it was found that the implementation of the enhanced gas recovery technology provides significantly higher ultimate hydrocarbon recovery compared to the depletion. The predicted gas recovery factor when injecting carbon dioxide into the V-16 reservoir increases by 2.95 % of the residual gas reserves, and the condensate recovery factor for these conditions by 1.24 %. Based on the study results, the technological efficiency of using carbon dioxide as an injection agent to increase the hydrocarbon recovery from water-driven reservoirs was established. According to the simulation results, the implementation of the technology of carbon dioxide injection into the V-16 reservoir of the Hadiach oil and gas condensate field can significantly increase the hydrocarbon recovery from the deposit, thereby increasing the production capacity of the field.http://journals.uran.ua/tarp/article/view/2177803d model of the fieldgas condensate reservoirwater driveresidual gascarbon dioxide injection.
collection DOAJ
language English
format Article
sources DOAJ
author Serhii Krivulya
Serhii Matkivskyi
Oleksandr Kondrat
Efim Bikman
spellingShingle Serhii Krivulya
Serhii Matkivskyi
Oleksandr Kondrat
Efim Bikman
Approval of the technology of carbon dioxide injection into the V-16 water driven reservoir of the Hadiach field (Ukraine) under the conditions of the water pressure mode pages 1–2
Technology Audit and Production Reserves
3d model of the field
gas condensate reservoir
water drive
residual gas
carbon dioxide injection.
author_facet Serhii Krivulya
Serhii Matkivskyi
Oleksandr Kondrat
Efim Bikman
author_sort Serhii Krivulya
title Approval of the technology of carbon dioxide injection into the V-16 water driven reservoir of the Hadiach field (Ukraine) under the conditions of the water pressure mode pages 1–2
title_short Approval of the technology of carbon dioxide injection into the V-16 water driven reservoir of the Hadiach field (Ukraine) under the conditions of the water pressure mode pages 1–2
title_full Approval of the technology of carbon dioxide injection into the V-16 water driven reservoir of the Hadiach field (Ukraine) under the conditions of the water pressure mode pages 1–2
title_fullStr Approval of the technology of carbon dioxide injection into the V-16 water driven reservoir of the Hadiach field (Ukraine) under the conditions of the water pressure mode pages 1–2
title_full_unstemmed Approval of the technology of carbon dioxide injection into the V-16 water driven reservoir of the Hadiach field (Ukraine) under the conditions of the water pressure mode pages 1–2
title_sort approval of the technology of carbon dioxide injection into the v-16 water driven reservoir of the hadiach field (ukraine) under the conditions of the water pressure mode pages 1–2
publisher PC Technology Center
series Technology Audit and Production Reserves
issn 2664-9969
2706-5448
publishDate 2020-12-01
description The object of research is water-driven gas-condensate reservoirs. Using the main hydrodynamic modeling tools Eclipse and Petrel from Schlumberger (USA), the study was carried out to improve the existing technologies for the displacement of residual gas reserves by carbon dioxide from the water-driven gas-condensate reservoirs. The carbon dioxide injection technology was tested in the V-16 reservoir of the Hadiach oil and gas condensate field (Ukraine). According to the study results, it was found that due to the injection of non-hydrocarbon gas, the cumulative water production are reduced compared to the depletion. Based on the obtained modeling results, the calculation of the predicted hydrocarbon recovery factors at the moment of carbon dioxide breakthrough into the production well was carried out according to the cumulative formation water production. According to the calculations, it was found that the implementation of the enhanced gas recovery technology provides significantly higher ultimate hydrocarbon recovery compared to the depletion. The predicted gas recovery factor when injecting carbon dioxide into the V-16 reservoir increases by 2.95 % of the residual gas reserves, and the condensate recovery factor for these conditions by 1.24 %. Based on the study results, the technological efficiency of using carbon dioxide as an injection agent to increase the hydrocarbon recovery from water-driven reservoirs was established. According to the simulation results, the implementation of the technology of carbon dioxide injection into the V-16 reservoir of the Hadiach oil and gas condensate field can significantly increase the hydrocarbon recovery from the deposit, thereby increasing the production capacity of the field.
topic 3d model of the field
gas condensate reservoir
water drive
residual gas
carbon dioxide injection.
url http://journals.uran.ua/tarp/article/view/217780
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