Variable-Permeability Well-Testing Models and Pressure Response in Low-Permeability Reservoirs with non-Darcy Flow

This paper proposes the concept of variable-permeability effect and sets up the one-dimensional and two-dimensional non-Darcy well testing models. The finite difference algorithm is employed to solve the differential equations of the variable-permeability model, and the non-convergence of the numeri...

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Main Authors: Naichao Feng, Shiqing Cheng, Weixing Lan, Guoquan Mu, Yao Peng, Haiyang Yu
Format: Article
Language:English
Published: Universidad Nacional de Colombia 2016-01-01
Series:Earth Sciences Research Journal
Subjects:
Online Access:https://revistas.unal.edu.co/index.php/esrj/article/view/54144
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spelling doaj-06a190137b394b4f84d73d1e16b838d02020-11-24T22:41:55ZengUniversidad Nacional de ColombiaEarth Sciences Research Journal1794-61902339-34592016-01-0120110.15446/esrj.v20n1.5414443062Variable-Permeability Well-Testing Models and Pressure Response in Low-Permeability Reservoirs with non-Darcy FlowNaichao Feng0Shiqing Cheng1Weixing Lan2Guoquan Mu3Yao Peng4Haiyang Yu5MOE Key Laboratory of Petroleum Engineering China University of Petroleum Beijing Beijing 102249, China Tel: +603-79677199 Fax:+603-79675149MOE Key Laboratory of Petroleum Engineering China University of Petroleum Beijing Beijing 102249, ChinaE&D Research Institute of Liao He Oil Field Company, Panjin, Liaoning 124010, ChinaE&D Institute of Changqing Oil Company, Xi’an, Shanxi 710021, ChinaDepartment of Petroleum Engineering, University of Texas at Austin, Austin 78712, USAMOE Key Laboratory of Petroleum Engineering China University of Petroleum Beijing Beijing 102249, ChinaThis paper proposes the concept of variable-permeability effect and sets up the one-dimensional and two-dimensional non-Darcy well testing models. The finite difference algorithm is employed to solve the differential equations of the variable-permeability model, and the non-convergence of the numerical solutions is solved by using the geometric mean of permeability. The type curves of pressure and pressure derivative with variable-permeability effect are obtained, and sensitivity analysis is conducted. The results show that the type curves upturn in the middle and late sections, and the curves turn more upward with the severer of the variable-permeability effect. The severer the non-Darcy effect is, the less obviously the curve upturns caused by boundary effect. Furthermore, the boundary effect is increased by increasing the number of impermeable boundaries or decreasing the distance between the well and boundary.https://revistas.unal.edu.co/index.php/esrj/article/view/54144Variable-permeability effectLow-permeability reservoirsNon-Darcy owWell testingPressure gradientBoundary effect.
collection DOAJ
language English
format Article
sources DOAJ
author Naichao Feng
Shiqing Cheng
Weixing Lan
Guoquan Mu
Yao Peng
Haiyang Yu
spellingShingle Naichao Feng
Shiqing Cheng
Weixing Lan
Guoquan Mu
Yao Peng
Haiyang Yu
Variable-Permeability Well-Testing Models and Pressure Response in Low-Permeability Reservoirs with non-Darcy Flow
Earth Sciences Research Journal
Variable-permeability effect
Low-permeability reservoirs
Non-Darcy ow
Well testing
Pressure gradient
Boundary effect.
author_facet Naichao Feng
Shiqing Cheng
Weixing Lan
Guoquan Mu
Yao Peng
Haiyang Yu
author_sort Naichao Feng
title Variable-Permeability Well-Testing Models and Pressure Response in Low-Permeability Reservoirs with non-Darcy Flow
title_short Variable-Permeability Well-Testing Models and Pressure Response in Low-Permeability Reservoirs with non-Darcy Flow
title_full Variable-Permeability Well-Testing Models and Pressure Response in Low-Permeability Reservoirs with non-Darcy Flow
title_fullStr Variable-Permeability Well-Testing Models and Pressure Response in Low-Permeability Reservoirs with non-Darcy Flow
title_full_unstemmed Variable-Permeability Well-Testing Models and Pressure Response in Low-Permeability Reservoirs with non-Darcy Flow
title_sort variable-permeability well-testing models and pressure response in low-permeability reservoirs with non-darcy flow
publisher Universidad Nacional de Colombia
series Earth Sciences Research Journal
issn 1794-6190
2339-3459
publishDate 2016-01-01
description This paper proposes the concept of variable-permeability effect and sets up the one-dimensional and two-dimensional non-Darcy well testing models. The finite difference algorithm is employed to solve the differential equations of the variable-permeability model, and the non-convergence of the numerical solutions is solved by using the geometric mean of permeability. The type curves of pressure and pressure derivative with variable-permeability effect are obtained, and sensitivity analysis is conducted. The results show that the type curves upturn in the middle and late sections, and the curves turn more upward with the severer of the variable-permeability effect. The severer the non-Darcy effect is, the less obviously the curve upturns caused by boundary effect. Furthermore, the boundary effect is increased by increasing the number of impermeable boundaries or decreasing the distance between the well and boundary.
topic Variable-permeability effect
Low-permeability reservoirs
Non-Darcy ow
Well testing
Pressure gradient
Boundary effect.
url https://revistas.unal.edu.co/index.php/esrj/article/view/54144
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