Numerical Model For Napl Migration In Double-Porosity Subsurface Systems

The double-porosity concept has been successfully applied by many researchers to simulate fluid flow in oil reservoirs over the past few decades. These oil reservoirs were typically considered to be made of fractured or fissured rock, hence the usance of the double-porosity concept. Nonetheless, do...

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Main Authors: Ngien, S. K., Tan, Lit Ken
Format: Conference or Workshop Item
Language:English
Published: 2015
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Online Access:http://umpir.ump.edu.my/id/eprint/9426/1/Numerical%20Model%20For%20Napl%20Migration%20In%20Double-Porosity%20Subsurface%20Systems.pdf
http://umpir.ump.edu.my/id/eprint/9426/
http://89.31.100.18/~iahrpapers/80229.pdf
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spelling my.ump.umpir.94262018-02-06T07:37:23Z http://umpir.ump.edu.my/id/eprint/9426/ Numerical Model For Napl Migration In Double-Porosity Subsurface Systems Ngien, S. K. Tan, Lit Ken TA Engineering (General). Civil engineering (General) The double-porosity concept has been successfully applied by many researchers to simulate fluid flow in oil reservoirs over the past few decades. These oil reservoirs were typically considered to be made of fractured or fissured rock, hence the usance of the double-porosity concept. Nonetheless, double-porosity may also exist in soil either through soil aggregation, or through soil features such as wormholes, cracks and root holes. These attributes in soil that cause the occurrence of double-porosity are also known as secondary porosity features and are akin to the reservoir rock fractures or fissures. In the case of groundwater contamination, the occurrence of double-porosity in soil is highly influential since immiscible fluids have been found to flow preferentially through the secondary porosity features. Ergo, a numerical model for non-aqueous phase liquids (NAPL) migration in double-porosity groundwater systems was developed. This model was modified from the conventional double-porosity model applied in the petroleum industry. The difference is that while the standard double-porosity models usually simulate the fluid flows in both continua making up the doubleporosity medium, the double-porosity model presented here focuses the modelling on the secondary porosity features in the soil, therefore making it more pertinent in the context of groundwater contamination. In the modified model, the phase saturations and relative permeabilities are expressed as functions of the capillary pressures. The resultant nonlinear governing partial differential equations are solved using numerical methods. The problem is discretized spatially using the Galerkin’s weighted-residual finite element method whereas a fully implicit scheme is used for temporal discretization. Verification of the developed model has been done against similar works in the open literature and the preferential flow of NAPL through the secondary porosity features was validated. 2015 Conference or Workshop Item PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/9426/1/Numerical%20Model%20For%20Napl%20Migration%20In%20Double-Porosity%20Subsurface%20Systems.pdf Ngien, S. K. and Tan, Lit Ken (2015) Numerical Model For Napl Migration In Double-Porosity Subsurface Systems. In: E-proceedings of the 36th IAHR World Congress, 28 June – 3 July 2015 , Netherlands . pp. 1-5.. http://89.31.100.18/~iahrpapers/80229.pdf
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Ngien, S. K.
Tan, Lit Ken
Numerical Model For Napl Migration In Double-Porosity Subsurface Systems
description The double-porosity concept has been successfully applied by many researchers to simulate fluid flow in oil reservoirs over the past few decades. These oil reservoirs were typically considered to be made of fractured or fissured rock, hence the usance of the double-porosity concept. Nonetheless, double-porosity may also exist in soil either through soil aggregation, or through soil features such as wormholes, cracks and root holes. These attributes in soil that cause the occurrence of double-porosity are also known as secondary porosity features and are akin to the reservoir rock fractures or fissures. In the case of groundwater contamination, the occurrence of double-porosity in soil is highly influential since immiscible fluids have been found to flow preferentially through the secondary porosity features. Ergo, a numerical model for non-aqueous phase liquids (NAPL) migration in double-porosity groundwater systems was developed. This model was modified from the conventional double-porosity model applied in the petroleum industry. The difference is that while the standard double-porosity models usually simulate the fluid flows in both continua making up the doubleporosity medium, the double-porosity model presented here focuses the modelling on the secondary porosity features in the soil, therefore making it more pertinent in the context of groundwater contamination. In the modified model, the phase saturations and relative permeabilities are expressed as functions of the capillary pressures. The resultant nonlinear governing partial differential equations are solved using numerical methods. The problem is discretized spatially using the Galerkin’s weighted-residual finite element method whereas a fully implicit scheme is used for temporal discretization. Verification of the developed model has been done against similar works in the open literature and the preferential flow of NAPL through the secondary porosity features was validated.
format Conference or Workshop Item
author Ngien, S. K.
Tan, Lit Ken
author_facet Ngien, S. K.
Tan, Lit Ken
author_sort Ngien, S. K.
title Numerical Model For Napl Migration In Double-Porosity Subsurface Systems
title_short Numerical Model For Napl Migration In Double-Porosity Subsurface Systems
title_full Numerical Model For Napl Migration In Double-Porosity Subsurface Systems
title_fullStr Numerical Model For Napl Migration In Double-Porosity Subsurface Systems
title_full_unstemmed Numerical Model For Napl Migration In Double-Porosity Subsurface Systems
title_sort numerical model for napl migration in double-porosity subsurface systems
publishDate 2015
url http://umpir.ump.edu.my/id/eprint/9426/1/Numerical%20Model%20For%20Napl%20Migration%20In%20Double-Porosity%20Subsurface%20Systems.pdf
http://umpir.ump.edu.my/id/eprint/9426/
http://89.31.100.18/~iahrpapers/80229.pdf
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