Rules of fracture propagation of hydraulic fracturing in radial well based on XFEM

Abstract The radial well fracturing has been applied and achieved effective output. However, the fracture morphology and propagation law of it are still remain unclear, which limits the development and application of it. A 3D numerical model is established by ABAQUS to solve the current problems. Th...

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Main Authors: Xiaolong Li, Wen Xiao, Zhanqing Qu, Tiankui Guo, Jianxiong Li, Wei Zhang, Yu Tian
Format: Article
Language:English
Published: SpringerOpen 2018-02-01
Series:Journal of Petroleum Exploration and Production Technology
Subjects:
Online Access:http://link.springer.com/article/10.1007/s13202-018-0436-5
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spelling doaj-f76f50d83bc844919323c52c1aa686372020-11-25T01:16:19ZengSpringerOpenJournal of Petroleum Exploration and Production Technology2190-05582190-05662018-02-01841547155710.1007/s13202-018-0436-5Rules of fracture propagation of hydraulic fracturing in radial well based on XFEMXiaolong Li0Wen Xiao1Zhanqing Qu2Tiankui Guo3Jianxiong Li4Wei Zhang5Yu Tian6Department of Petroleum Engineering, China University of Petroleum (East China)Petroleum Engineering Technology Institute of Shengli OilfieldDepartment of Petroleum Engineering, China University of Petroleum (East China)Department of Petroleum Engineering, China University of Petroleum (East China)College of Architecture & Environment, Sichuan UniversityDepartment of Petroleum Engineering, China University of Petroleum (East China)Department of Petroleum Engineering, China University of Petroleum (East China)Abstract The radial well fracturing has been applied and achieved effective output. However, the fracture morphology and propagation law of it are still remain unclear, which limits the development and application of it. A 3D numerical model is established by ABAQUS to solve the current problems. The stage of fracture propagation is simulated by the extended finite element method. The conclusions stated that in situ stress field distribution was changed during the radial well fracturing and the induced stress field along the radial well is established at the same time. The propagation of major fracture is orientated by the induced stress in a certain area. The guiding function of fracture orientated propagation is evaluated by included angle η between the axis of radial well and equivalent fracture. The smaller the value of η is, the better effect of fracture orientated propagation is. The increase of horizontal stress difference and decrease of vertical density of radial wells are unfavorable to decrease the value of η. The failure pressure grows up with the azimuth angle of radial well increasing. The increasing of elastic modulus of formation is not conducive to the effect of radial well fracturing. The increasing of Poisson’s ratio of formation is conducive to the failure pressure and maximum fracture width, but not as helpful as to decrease the value of η. Larger diameter of radial well is better for fracture oriented propagation. Operation parameters of fracturing fluid viscosity and construction displacement have less effect on the value of η. Also, the degree of different parameters influence on value of η, failure pressure and maximum fracture width is ranked by the grey correlation method. The results can be referred to prediction of fracture propagation and design of radial well completion or fracturing.http://link.springer.com/article/10.1007/s13202-018-0436-5Radial wellHydraulic fracturingInduced stress fieldOrientated propagationXFEM
collection DOAJ
language English
format Article
sources DOAJ
author Xiaolong Li
Wen Xiao
Zhanqing Qu
Tiankui Guo
Jianxiong Li
Wei Zhang
Yu Tian
spellingShingle Xiaolong Li
Wen Xiao
Zhanqing Qu
Tiankui Guo
Jianxiong Li
Wei Zhang
Yu Tian
Rules of fracture propagation of hydraulic fracturing in radial well based on XFEM
Journal of Petroleum Exploration and Production Technology
Radial well
Hydraulic fracturing
Induced stress field
Orientated propagation
XFEM
author_facet Xiaolong Li
Wen Xiao
Zhanqing Qu
Tiankui Guo
Jianxiong Li
Wei Zhang
Yu Tian
author_sort Xiaolong Li
title Rules of fracture propagation of hydraulic fracturing in radial well based on XFEM
title_short Rules of fracture propagation of hydraulic fracturing in radial well based on XFEM
title_full Rules of fracture propagation of hydraulic fracturing in radial well based on XFEM
title_fullStr Rules of fracture propagation of hydraulic fracturing in radial well based on XFEM
title_full_unstemmed Rules of fracture propagation of hydraulic fracturing in radial well based on XFEM
title_sort rules of fracture propagation of hydraulic fracturing in radial well based on xfem
publisher SpringerOpen
series Journal of Petroleum Exploration and Production Technology
issn 2190-0558
2190-0566
publishDate 2018-02-01
description Abstract The radial well fracturing has been applied and achieved effective output. However, the fracture morphology and propagation law of it are still remain unclear, which limits the development and application of it. A 3D numerical model is established by ABAQUS to solve the current problems. The stage of fracture propagation is simulated by the extended finite element method. The conclusions stated that in situ stress field distribution was changed during the radial well fracturing and the induced stress field along the radial well is established at the same time. The propagation of major fracture is orientated by the induced stress in a certain area. The guiding function of fracture orientated propagation is evaluated by included angle η between the axis of radial well and equivalent fracture. The smaller the value of η is, the better effect of fracture orientated propagation is. The increase of horizontal stress difference and decrease of vertical density of radial wells are unfavorable to decrease the value of η. The failure pressure grows up with the azimuth angle of radial well increasing. The increasing of elastic modulus of formation is not conducive to the effect of radial well fracturing. The increasing of Poisson’s ratio of formation is conducive to the failure pressure and maximum fracture width, but not as helpful as to decrease the value of η. Larger diameter of radial well is better for fracture oriented propagation. Operation parameters of fracturing fluid viscosity and construction displacement have less effect on the value of η. Also, the degree of different parameters influence on value of η, failure pressure and maximum fracture width is ranked by the grey correlation method. The results can be referred to prediction of fracture propagation and design of radial well completion or fracturing.
topic Radial well
Hydraulic fracturing
Induced stress field
Orientated propagation
XFEM
url http://link.springer.com/article/10.1007/s13202-018-0436-5
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