Numerical Simulation of Hole Cleaning of a Horizontal Wellbore Model with Breakout Enlargement Section

Horizontal wells are more likely than vertical wells to have enlarged wellbore sections due to borehole instability. However, there is scarce research on borehole cleaning of horizontal wells with enlarged wellbore sections. In this paper, we establish a horizontal wellbore model with a breakout enl...

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Main Authors: Xiaofeng Sun, Liang Tao, Yuanzhe Zhao, Jingyu Qu, Di Yao, Zijian Li
Format: Article
Language:English
Published: MDPI AG 2023-07-01
Series:Mathematics
Subjects:
Online Access:https://www.mdpi.com/2227-7390/11/14/3070
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author Xiaofeng Sun
Liang Tao
Yuanzhe Zhao
Jingyu Qu
Di Yao
Zijian Li
author_facet Xiaofeng Sun
Liang Tao
Yuanzhe Zhao
Jingyu Qu
Di Yao
Zijian Li
author_sort Xiaofeng Sun
collection DOAJ
description Horizontal wells are more likely than vertical wells to have enlarged wellbore sections due to borehole instability. However, there is scarce research on borehole cleaning of horizontal wells with enlarged wellbore sections. In this paper, we establish a horizontal wellbore model with a breakout enlargement section using field borehole diameter data. We used the three-dimensional computational fluid dynamics (CFD) method and the Realizable k-ε turbulence model with the Euler–Euler approach to simulate the effects of the drilling fluid circulation return speed and the spinning speed of the drill pipe on the cutting movement of conventional horizontal wells and horizontal wells with a breakout enlargement section. The simulation results demonstrate that increasing the drilling fluid circulation return speed and the spinning speed of the drill pipe does not significantly improve the hole cleaning impact for horizontal wells with a breakout enlargement section. We analyzed the effects of the enlargement ratio, ellipticity, and principal axis orientation on the borehole cleaning effect of horizontal wells with a breakout enlargement section. The results show that the cleaning impact is better when the enlargement ratio is lower; moreover, the ellipticity is larger and the principal axis orientation is perpendicular to the gravity direction. This paper fills a gap in the existing theory of hole cleaning in horizontal wells and provides a theoretical basis for improving the hole cleaning effect in actual drilling processes.
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spelling doaj.art-f617ac0ba88b435891571baf1965f7fb2023-11-18T20:20:06ZengMDPI AGMathematics2227-73902023-07-011114307010.3390/math11143070Numerical Simulation of Hole Cleaning of a Horizontal Wellbore Model with Breakout Enlargement SectionXiaofeng Sun0Liang Tao1Yuanzhe Zhao2Jingyu Qu3Di Yao4Zijian Li5Sanya Offshore Oil & Gas Research Institute, Northeast Petroleum University, Sanya 572025, ChinaSanya Offshore Oil & Gas Research Institute, Northeast Petroleum University, Sanya 572025, ChinaSanya Offshore Oil & Gas Research Institute, Northeast Petroleum University, Sanya 572025, ChinaSanya Offshore Oil & Gas Research Institute, Northeast Petroleum University, Sanya 572025, ChinaSanya Offshore Oil & Gas Research Institute, Northeast Petroleum University, Sanya 572025, ChinaDepartment of Engineering and Applied Science, Memorial University of Newfoundland, St. John’s, NF A1B 3X5, CanadaHorizontal wells are more likely than vertical wells to have enlarged wellbore sections due to borehole instability. However, there is scarce research on borehole cleaning of horizontal wells with enlarged wellbore sections. In this paper, we establish a horizontal wellbore model with a breakout enlargement section using field borehole diameter data. We used the three-dimensional computational fluid dynamics (CFD) method and the Realizable k-ε turbulence model with the Euler–Euler approach to simulate the effects of the drilling fluid circulation return speed and the spinning speed of the drill pipe on the cutting movement of conventional horizontal wells and horizontal wells with a breakout enlargement section. The simulation results demonstrate that increasing the drilling fluid circulation return speed and the spinning speed of the drill pipe does not significantly improve the hole cleaning impact for horizontal wells with a breakout enlargement section. We analyzed the effects of the enlargement ratio, ellipticity, and principal axis orientation on the borehole cleaning effect of horizontal wells with a breakout enlargement section. The results show that the cleaning impact is better when the enlargement ratio is lower; moreover, the ellipticity is larger and the principal axis orientation is perpendicular to the gravity direction. This paper fills a gap in the existing theory of hole cleaning in horizontal wells and provides a theoretical basis for improving the hole cleaning effect in actual drilling processes.https://www.mdpi.com/2227-7390/11/14/3070enlargementhole cleaningbreakoutsnumerical simulationcomputational fluid dynamics
spellingShingle Xiaofeng Sun
Liang Tao
Yuanzhe Zhao
Jingyu Qu
Di Yao
Zijian Li
Numerical Simulation of Hole Cleaning of a Horizontal Wellbore Model with Breakout Enlargement Section
Mathematics
enlargement
hole cleaning
breakouts
numerical simulation
computational fluid dynamics
title Numerical Simulation of Hole Cleaning of a Horizontal Wellbore Model with Breakout Enlargement Section
title_full Numerical Simulation of Hole Cleaning of a Horizontal Wellbore Model with Breakout Enlargement Section
title_fullStr Numerical Simulation of Hole Cleaning of a Horizontal Wellbore Model with Breakout Enlargement Section
title_full_unstemmed Numerical Simulation of Hole Cleaning of a Horizontal Wellbore Model with Breakout Enlargement Section
title_short Numerical Simulation of Hole Cleaning of a Horizontal Wellbore Model with Breakout Enlargement Section
title_sort numerical simulation of hole cleaning of a horizontal wellbore model with breakout enlargement section
topic enlargement
hole cleaning
breakouts
numerical simulation
computational fluid dynamics
url https://www.mdpi.com/2227-7390/11/14/3070
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