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Soft Movable Polymer Gel for Controlling Water Coning of Horizontal Well in Offshore Heavy Oil Cold Production

Horizontal well water coning in offshore fields is one of the most common causes of rapid declines in crude oil production and, even more critical, can lead to oil well shut down. The offshore Y oil field with a water cut of 94.7% urgently needs horizontal well water control. However, it is a challe...

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Autores principales: Qu, Jie, Wang, Pan, You, Qing, Zhao, Guang, Sun, Yongpeng, Liu, Yifei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9223143/
https://www.ncbi.nlm.nih.gov/pubmed/35735696
http://dx.doi.org/10.3390/gels8060352
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author Qu, Jie
Wang, Pan
You, Qing
Zhao, Guang
Sun, Yongpeng
Liu, Yifei
author_facet Qu, Jie
Wang, Pan
You, Qing
Zhao, Guang
Sun, Yongpeng
Liu, Yifei
author_sort Qu, Jie
collection PubMed
description Horizontal well water coning in offshore fields is one of the most common causes of rapid declines in crude oil production and, even more critical, can lead to oil well shut down. The offshore Y oil field with a water cut of 94.7% urgently needs horizontal well water control. However, it is a challenge for polymer gels to meet the requirements of low-temperature (55 °C) gelation and mobility to control water in a wider range. This paper introduced a novel polymer gel cross-linked by hydrolyzed polyacrylamide and chromium acetate and phenolic resin for water coning control of a horizontal well. The detailed gelant formula and treatment method of water coning control for a horizontal well in an offshore field was established. The optimized gelant formula was 0.30~0.45% HPAM + 0.30~0.5% phenolic resin + 0.10~0.15% chromium acetate, with corresponding gelation time of 26~34 h at 55 °C. The results showed that this gel has a compact network structure and excellent creep property, and it can play an efficient water control role in the microscopic model. The thus-optimized gelants were successively injected with injection volumes of 500.0 m(3). The displacement fluid was used to displace gelants into the lost zone away from the oil zone. Then, the formed gel can be worked as the chemical packer in the oil–water interface to control water coning after shutting in for 4 days of gelation. The oil-field monitoring data indicated that the oil rate increased from 9.2 m(3)/d to 20.0 m(3)/d, the average water cut decreased to 60~70% after treatment, and the cumulative oil production could obtain 1.035 × 10(4) t instead of 3.9 × 10(3) t.
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spelling pubmed-92231432022-06-24 Soft Movable Polymer Gel for Controlling Water Coning of Horizontal Well in Offshore Heavy Oil Cold Production Qu, Jie Wang, Pan You, Qing Zhao, Guang Sun, Yongpeng Liu, Yifei Gels Article Horizontal well water coning in offshore fields is one of the most common causes of rapid declines in crude oil production and, even more critical, can lead to oil well shut down. The offshore Y oil field with a water cut of 94.7% urgently needs horizontal well water control. However, it is a challenge for polymer gels to meet the requirements of low-temperature (55 °C) gelation and mobility to control water in a wider range. This paper introduced a novel polymer gel cross-linked by hydrolyzed polyacrylamide and chromium acetate and phenolic resin for water coning control of a horizontal well. The detailed gelant formula and treatment method of water coning control for a horizontal well in an offshore field was established. The optimized gelant formula was 0.30~0.45% HPAM + 0.30~0.5% phenolic resin + 0.10~0.15% chromium acetate, with corresponding gelation time of 26~34 h at 55 °C. The results showed that this gel has a compact network structure and excellent creep property, and it can play an efficient water control role in the microscopic model. The thus-optimized gelants were successively injected with injection volumes of 500.0 m(3). The displacement fluid was used to displace gelants into the lost zone away from the oil zone. Then, the formed gel can be worked as the chemical packer in the oil–water interface to control water coning after shutting in for 4 days of gelation. The oil-field monitoring data indicated that the oil rate increased from 9.2 m(3)/d to 20.0 m(3)/d, the average water cut decreased to 60~70% after treatment, and the cumulative oil production could obtain 1.035 × 10(4) t instead of 3.9 × 10(3) t. MDPI 2022-06-05 /pmc/articles/PMC9223143/ /pubmed/35735696 http://dx.doi.org/10.3390/gels8060352 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Qu, Jie
Wang, Pan
You, Qing
Zhao, Guang
Sun, Yongpeng
Liu, Yifei
Soft Movable Polymer Gel for Controlling Water Coning of Horizontal Well in Offshore Heavy Oil Cold Production
title Soft Movable Polymer Gel for Controlling Water Coning of Horizontal Well in Offshore Heavy Oil Cold Production
title_full Soft Movable Polymer Gel for Controlling Water Coning of Horizontal Well in Offshore Heavy Oil Cold Production
title_fullStr Soft Movable Polymer Gel for Controlling Water Coning of Horizontal Well in Offshore Heavy Oil Cold Production
title_full_unstemmed Soft Movable Polymer Gel for Controlling Water Coning of Horizontal Well in Offshore Heavy Oil Cold Production
title_short Soft Movable Polymer Gel for Controlling Water Coning of Horizontal Well in Offshore Heavy Oil Cold Production
title_sort soft movable polymer gel for controlling water coning of horizontal well in offshore heavy oil cold production
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9223143/
https://www.ncbi.nlm.nih.gov/pubmed/35735696
http://dx.doi.org/10.3390/gels8060352
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