An Analytical Solution of the Pseudosteady State Productivity Index for the Fracture Geometry Optimization of Fractured Wells

The pseudosteady state productivity index is very important for evaluating the production from oil and gas wells. It is usually used as an objective function for the optimization of fractured wells. However, there is no analytical solution for it, especially when the proppant number of the fractured...

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Main Authors: Hui Gao, Yule Hu, Longchen Duan, Kun Ai
Format: Article
Language:English
Published: MDPI AG 2019-01-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/12/1/176
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spelling doaj-0a5bac17aac14a87923cda46681df1552020-11-24T21:24:39ZengMDPI AGEnergies1996-10732019-01-0112117610.3390/en12010176en12010176An Analytical Solution of the Pseudosteady State Productivity Index for the Fracture Geometry Optimization of Fractured WellsHui Gao0Yule Hu1Longchen Duan2Kun Ai3Faculty of Engineering, China University of Geosciences, Wuhan 430074, ChinaFaculty of Engineering, China University of Geosciences, Wuhan 430074, ChinaFaculty of Engineering, China University of Geosciences, Wuhan 430074, ChinaFaculty of Engineering, China University of Geosciences, Wuhan 430074, ChinaThe pseudosteady state productivity index is very important for evaluating the production from oil and gas wells. It is usually used as an objective function for the optimization of fractured wells. However, there is no analytical solution for it, especially when the proppant number of the fractured well is greater than 0.1. This paper extends the established fitting solution for proppant numbers less than 0.1 by introducing an explicit expression of the shape factor. It also proposes a new asymptotic solution based on the trilinear-flow model for proppant numbers greater than 0.1. The two solutions are combined to evaluate the pseudosteady state productivity index. The evaluation results are verified by the numerical method. The new solution can be directly used for fracture geometry optimization. The optimization results are consistent with those given by the unified fracture design (UFD) method. Using the analytical solution for the pseudosteady state productivity index, optimization results can be obtained for rectangular drainage areas with arbitrary aspect ratios without requiring any interpolation or extrapolation. Moreover, the new solution provides more rigorous optimization results than the UFD method, especially for fractured horizontal wells.http://www.mdpi.com/1996-1073/12/1/176asymptotic solutionpseudosteady state productivity indexfractured wellsproppant numberfracture geometry optimization
collection DOAJ
language English
format Article
sources DOAJ
author Hui Gao
Yule Hu
Longchen Duan
Kun Ai
spellingShingle Hui Gao
Yule Hu
Longchen Duan
Kun Ai
An Analytical Solution of the Pseudosteady State Productivity Index for the Fracture Geometry Optimization of Fractured Wells
Energies
asymptotic solution
pseudosteady state productivity index
fractured wells
proppant number
fracture geometry optimization
author_facet Hui Gao
Yule Hu
Longchen Duan
Kun Ai
author_sort Hui Gao
title An Analytical Solution of the Pseudosteady State Productivity Index for the Fracture Geometry Optimization of Fractured Wells
title_short An Analytical Solution of the Pseudosteady State Productivity Index for the Fracture Geometry Optimization of Fractured Wells
title_full An Analytical Solution of the Pseudosteady State Productivity Index for the Fracture Geometry Optimization of Fractured Wells
title_fullStr An Analytical Solution of the Pseudosteady State Productivity Index for the Fracture Geometry Optimization of Fractured Wells
title_full_unstemmed An Analytical Solution of the Pseudosteady State Productivity Index for the Fracture Geometry Optimization of Fractured Wells
title_sort analytical solution of the pseudosteady state productivity index for the fracture geometry optimization of fractured wells
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2019-01-01
description The pseudosteady state productivity index is very important for evaluating the production from oil and gas wells. It is usually used as an objective function for the optimization of fractured wells. However, there is no analytical solution for it, especially when the proppant number of the fractured well is greater than 0.1. This paper extends the established fitting solution for proppant numbers less than 0.1 by introducing an explicit expression of the shape factor. It also proposes a new asymptotic solution based on the trilinear-flow model for proppant numbers greater than 0.1. The two solutions are combined to evaluate the pseudosteady state productivity index. The evaluation results are verified by the numerical method. The new solution can be directly used for fracture geometry optimization. The optimization results are consistent with those given by the unified fracture design (UFD) method. Using the analytical solution for the pseudosteady state productivity index, optimization results can be obtained for rectangular drainage areas with arbitrary aspect ratios without requiring any interpolation or extrapolation. Moreover, the new solution provides more rigorous optimization results than the UFD method, especially for fractured horizontal wells.
topic asymptotic solution
pseudosteady state productivity index
fractured wells
proppant number
fracture geometry optimization
url http://www.mdpi.com/1996-1073/12/1/176
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