Numerical Investigation of the Time-Dependent and the Proppant Dominated Stress Shadow Effects in a Transverse Multiple Fracture System and Optimization

In this paper, a numerical study is conducted to investigate the stress shadow effects (stress reorientation and change) during hydraulic fracturing in a transverse multiple fracture system. A numerical model is used for the numerical study. It is a 3D model and can simulate the fracture operation f...

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Main Authors: Lei Zhou, Junchao Chen, Yang Gou, Wentao Feng
Format: Article
Language:English
Published: MDPI AG 2017-01-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/10/1/83
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spelling doaj-3ed7efb217ca4fd891c0490e1c4627e82020-11-24T22:54:24ZengMDPI AGEnergies1996-10732017-01-011018310.3390/en10010083en10010083Numerical Investigation of the Time-Dependent and the Proppant Dominated Stress Shadow Effects in a Transverse Multiple Fracture System and OptimizationLei Zhou0Junchao Chen1Yang Gou2Wentao Feng3State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, 400030 Chongqing, ChinaState Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, 400030 Chongqing, ChinaEnergy Research Center of Lower Saxony, 38640 Goslar, GermanyState Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, 400030 Chongqing, ChinaIn this paper, a numerical study is conducted to investigate the stress shadow effects (stress reorientation and change) during hydraulic fracturing in a transverse multiple fracture system. A numerical model is used for the numerical study. It is a 3D model and can simulate the fracture operation from injection begin to full closure (fracture contact). Therefore, there is no need to assume the fracture geometry for the investigation of the stress shadow effects (unlike previous studies). In the numerical study, the first and second operations in a fictive transverse multiple fracture system are simulated, meanwhile the stress shadow effects and their influences on the propagation and proppant placement of the second fracture are investigated. According to the results, the following conclusions are discerned: (1) most proppants are located in the lower part of the reservoir, even below the perforation; (2) the stress shadow effects are time-dependent and proppant dominated; (3) the stress shadow effects affect the fracture propagation and the proppant placement of the second fracture, and also the fracture conductivity of the first fracture; (4) the time-dependent stress shadow effects can be divided into four phases, fracture enlargement, closure without proppant contact, closure with proppant contact and full closure; and (5) the superposition effect of the stress shadow in a transverse multiple fracture system exists. According to the conclusions, some optimizations are recommended.http://www.mdpi.com/1996-1073/10/1/83transverse multiple fracture3D numerical modelingtime-dependent and proppant dominated stress shadow effecthydro-mechanical couplingoptimization
collection DOAJ
language English
format Article
sources DOAJ
author Lei Zhou
Junchao Chen
Yang Gou
Wentao Feng
spellingShingle Lei Zhou
Junchao Chen
Yang Gou
Wentao Feng
Numerical Investigation of the Time-Dependent and the Proppant Dominated Stress Shadow Effects in a Transverse Multiple Fracture System and Optimization
Energies
transverse multiple fracture
3D numerical modeling
time-dependent and proppant dominated stress shadow effect
hydro-mechanical coupling
optimization
author_facet Lei Zhou
Junchao Chen
Yang Gou
Wentao Feng
author_sort Lei Zhou
title Numerical Investigation of the Time-Dependent and the Proppant Dominated Stress Shadow Effects in a Transverse Multiple Fracture System and Optimization
title_short Numerical Investigation of the Time-Dependent and the Proppant Dominated Stress Shadow Effects in a Transverse Multiple Fracture System and Optimization
title_full Numerical Investigation of the Time-Dependent and the Proppant Dominated Stress Shadow Effects in a Transverse Multiple Fracture System and Optimization
title_fullStr Numerical Investigation of the Time-Dependent and the Proppant Dominated Stress Shadow Effects in a Transverse Multiple Fracture System and Optimization
title_full_unstemmed Numerical Investigation of the Time-Dependent and the Proppant Dominated Stress Shadow Effects in a Transverse Multiple Fracture System and Optimization
title_sort numerical investigation of the time-dependent and the proppant dominated stress shadow effects in a transverse multiple fracture system and optimization
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2017-01-01
description In this paper, a numerical study is conducted to investigate the stress shadow effects (stress reorientation and change) during hydraulic fracturing in a transverse multiple fracture system. A numerical model is used for the numerical study. It is a 3D model and can simulate the fracture operation from injection begin to full closure (fracture contact). Therefore, there is no need to assume the fracture geometry for the investigation of the stress shadow effects (unlike previous studies). In the numerical study, the first and second operations in a fictive transverse multiple fracture system are simulated, meanwhile the stress shadow effects and their influences on the propagation and proppant placement of the second fracture are investigated. According to the results, the following conclusions are discerned: (1) most proppants are located in the lower part of the reservoir, even below the perforation; (2) the stress shadow effects are time-dependent and proppant dominated; (3) the stress shadow effects affect the fracture propagation and the proppant placement of the second fracture, and also the fracture conductivity of the first fracture; (4) the time-dependent stress shadow effects can be divided into four phases, fracture enlargement, closure without proppant contact, closure with proppant contact and full closure; and (5) the superposition effect of the stress shadow in a transverse multiple fracture system exists. According to the conclusions, some optimizations are recommended.
topic transverse multiple fracture
3D numerical modeling
time-dependent and proppant dominated stress shadow effect
hydro-mechanical coupling
optimization
url http://www.mdpi.com/1996-1073/10/1/83
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AT junchaochen numericalinvestigationofthetimedependentandtheproppantdominatedstressshadoweffectsinatransversemultiplefracturesystemandoptimization
AT yanggou numericalinvestigationofthetimedependentandtheproppantdominatedstressshadoweffectsinatransversemultiplefracturesystemandoptimization
AT wentaofeng numericalinvestigationofthetimedependentandtheproppantdominatedstressshadoweffectsinatransversemultiplefracturesystemandoptimization
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