The optimization of pre-slug size in CO2-N2 compound flooding

In order to enhance oil recovery in low and ultra-low permeability layer, both of the numerical simulation and physical model experiment have been researched. First, the dynamic distribution of CO1 and N1 in the oil and gas phase in the CO2-N2 compound flooding process was numerically simulated by u...

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Main Authors: Chen Taoping, Sun Wen, Zhang Guofang, Wang Fuping
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/66/e3sconf_icgec2020_02017.pdf
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spelling doaj-633153f998ff42ddad2181bdd32194c22021-04-02T16:14:26ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012060201710.1051/e3sconf/202020602017e3sconf_icgec2020_02017The optimization of pre-slug size in CO2-N2 compound floodingChen Taoping0Sun Wen1Zhang Guofang2Wang Fuping3 Enhanced Oil and Gas Recovery Key Laboratory of Ministry of Education, Northeast Petroleum University Enhanced Oil and Gas Recovery Key Laboratory of Ministry of Education, Northeast Petroleum University Petroleum Engineering School, Harbin Petroleum Institute Petroleum Engineering School, Harbin Petroleum InstituteIn order to enhance oil recovery in low and ultra-low permeability layer, both of the numerical simulation and physical model experiment have been researched. First, the dynamic distribution of CO1 and N1 in the oil and gas phase in the CO2-N2 compound flooding process was numerically simulated by using the long slim-tube model. The results show that the CO2 slug should have at least 0.3 PV to prevent the impact of N2 channeling effectively. Second, under the experimental conditions of complete miscibility of CO2-crude oil, the two types of natural cores including low and ultra-low permeability, respectively, are used for experimental study on oil displacement. The results confirm that CO2-N2 compound flooding with 0.3 PV CO2 pre-slug can achieve a good result. Finally, a five-point well pattern element model is established by CMG. The recovery and the gas cost of per ton of oil are calculated respectively for CO2-N2 compound flooding and full CO2 flooding at 300 m well spacing of low and ultra-low permeability layer. According to the simulation results, the optimal CO2 pre-slug size in CO2-N2 compound flooding under the condition of low and ultra-low permeability layer five-point well pattern is 0.4 PV.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/66/e3sconf_icgec2020_02017.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Chen Taoping
Sun Wen
Zhang Guofang
Wang Fuping
spellingShingle Chen Taoping
Sun Wen
Zhang Guofang
Wang Fuping
The optimization of pre-slug size in CO2-N2 compound flooding
E3S Web of Conferences
author_facet Chen Taoping
Sun Wen
Zhang Guofang
Wang Fuping
author_sort Chen Taoping
title The optimization of pre-slug size in CO2-N2 compound flooding
title_short The optimization of pre-slug size in CO2-N2 compound flooding
title_full The optimization of pre-slug size in CO2-N2 compound flooding
title_fullStr The optimization of pre-slug size in CO2-N2 compound flooding
title_full_unstemmed The optimization of pre-slug size in CO2-N2 compound flooding
title_sort optimization of pre-slug size in co2-n2 compound flooding
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description In order to enhance oil recovery in low and ultra-low permeability layer, both of the numerical simulation and physical model experiment have been researched. First, the dynamic distribution of CO1 and N1 in the oil and gas phase in the CO2-N2 compound flooding process was numerically simulated by using the long slim-tube model. The results show that the CO2 slug should have at least 0.3 PV to prevent the impact of N2 channeling effectively. Second, under the experimental conditions of complete miscibility of CO2-crude oil, the two types of natural cores including low and ultra-low permeability, respectively, are used for experimental study on oil displacement. The results confirm that CO2-N2 compound flooding with 0.3 PV CO2 pre-slug can achieve a good result. Finally, a five-point well pattern element model is established by CMG. The recovery and the gas cost of per ton of oil are calculated respectively for CO2-N2 compound flooding and full CO2 flooding at 300 m well spacing of low and ultra-low permeability layer. According to the simulation results, the optimal CO2 pre-slug size in CO2-N2 compound flooding under the condition of low and ultra-low permeability layer five-point well pattern is 0.4 PV.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/66/e3sconf_icgec2020_02017.pdf
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