Investigation of Fracture Width Change under Closure Pressure in Unconventional Reservoir Based on the Hertz Contact Theory

To describe the fracture width is crucial for the flow conductivity evaluation, which influences the exploitation efficiency of unconventional oil and gas resources. Commonly, as the proppants fill in the fracture, the deformation will happen under the closure pressure to resist the fracture width c...

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Main Authors: Lifei Dong, Di Wang, Fengxia Li, Xinye Fu, Miao Wang
Format: Article
Language:English
Published: Hindawi-Wiley 2021-01-01
Series:Geofluids
Online Access:http://dx.doi.org/10.1155/2021/1268352
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spelling doaj-e584bbfaa2924a92be354da927d1cc792021-09-27T00:51:56ZengHindawi-WileyGeofluids1468-81232021-01-01202110.1155/2021/1268352Investigation of Fracture Width Change under Closure Pressure in Unconventional Reservoir Based on the Hertz Contact TheoryLifei Dong0Di Wang1Fengxia Li2Xinye Fu3Miao Wang4State Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective DevelopmentState Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective DevelopmentState Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective DevelopmentCollege of Civil EngineeringCollege of Mathematics and StatisticsTo describe the fracture width is crucial for the flow conductivity evaluation, which influences the exploitation efficiency of unconventional oil and gas resources. Commonly, as the proppants fill in the fracture, the deformation will happen under the closure pressure to resist the fracture width change. Therefore, it is significant to develop the theoretical model to predict the variation. In this work, the mathematical model for the propping behavior of proppants in the fracture under closure pressure is established based on the Hertz contact theory. Compared with the existing models, the developed model considers both the proppant insertion and the elastic compression among the proppants, which is closer to the actual physical process. Furthermore, the experimental cases with different proppant sizes are taken to verify the model, and the good conformity presents its rationality. The parameter sensitivity analysis of this model shows that the fracture width change increases with the increase of the average diameters of proppants (D) and it declines with the improving of proppant elasticity modulus (E1) and Poisson’s ratio (v1).http://dx.doi.org/10.1155/2021/1268352
collection DOAJ
language English
format Article
sources DOAJ
author Lifei Dong
Di Wang
Fengxia Li
Xinye Fu
Miao Wang
spellingShingle Lifei Dong
Di Wang
Fengxia Li
Xinye Fu
Miao Wang
Investigation of Fracture Width Change under Closure Pressure in Unconventional Reservoir Based on the Hertz Contact Theory
Geofluids
author_facet Lifei Dong
Di Wang
Fengxia Li
Xinye Fu
Miao Wang
author_sort Lifei Dong
title Investigation of Fracture Width Change under Closure Pressure in Unconventional Reservoir Based on the Hertz Contact Theory
title_short Investigation of Fracture Width Change under Closure Pressure in Unconventional Reservoir Based on the Hertz Contact Theory
title_full Investigation of Fracture Width Change under Closure Pressure in Unconventional Reservoir Based on the Hertz Contact Theory
title_fullStr Investigation of Fracture Width Change under Closure Pressure in Unconventional Reservoir Based on the Hertz Contact Theory
title_full_unstemmed Investigation of Fracture Width Change under Closure Pressure in Unconventional Reservoir Based on the Hertz Contact Theory
title_sort investigation of fracture width change under closure pressure in unconventional reservoir based on the hertz contact theory
publisher Hindawi-Wiley
series Geofluids
issn 1468-8123
publishDate 2021-01-01
description To describe the fracture width is crucial for the flow conductivity evaluation, which influences the exploitation efficiency of unconventional oil and gas resources. Commonly, as the proppants fill in the fracture, the deformation will happen under the closure pressure to resist the fracture width change. Therefore, it is significant to develop the theoretical model to predict the variation. In this work, the mathematical model for the propping behavior of proppants in the fracture under closure pressure is established based on the Hertz contact theory. Compared with the existing models, the developed model considers both the proppant insertion and the elastic compression among the proppants, which is closer to the actual physical process. Furthermore, the experimental cases with different proppant sizes are taken to verify the model, and the good conformity presents its rationality. The parameter sensitivity analysis of this model shows that the fracture width change increases with the increase of the average diameters of proppants (D) and it declines with the improving of proppant elasticity modulus (E1) and Poisson’s ratio (v1).
url http://dx.doi.org/10.1155/2021/1268352
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AT diwang investigationoffracturewidthchangeunderclosurepressureinunconventionalreservoirbasedonthehertzcontacttheory
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AT xinyefu investigationoffracturewidthchangeunderclosurepressureinunconventionalreservoirbasedonthehertzcontacttheory
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