A 3D FINITE ELEMENT ANALYSIS OF INCOMPRESSIBLE FLUID FLOW AND CONTAMINANT TRANSPORT THROUGH A POROUS LANDFILL
The paper investigated the flow of incompressible fluid and contaminant transport through a Porous Landfill using a numerical technique. A threedimensional finite element analysis technique was adopted for the solution. The problem was based on the Darcy’s Law and the Advection-Dispersion equation....
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doaj-728951886eed4bf59524f197355795202020-11-25T02:31:36ZengTaylor's UniversityJournal of Engineering Science and Technology1823-46902014-08-0194477489A 3D FINITE ELEMENT ANALYSIS OF INCOMPRESSIBLE FLUID FLOW AND CONTAMINANT TRANSPORT THROUGH A POROUS LANDFILL ADEGUN, I. K.0KOMOLAFE, O. D.1AHMED KADHIM HUSSEIN2OYEKALE, J.O.3Department of Mechanical Engineering, Faculty of Engineering and Technology, University of Ilorin, Ilorin, Kwara State, Nigeria Department of Mechanical Engineering, Faculty of Engineering and Technology, University of Ilorin, Ilorin, Kwara State, Nigeria College of Engineering, Department of Mechanical Engineering, Babylon University, Babylon City, Hilla, IraqDepartment of Mechanical Engineering, Faculty of Engineering and Technology, Ladoke Akintola University of Technology, Oyo state, Nigeria The paper investigated the flow of incompressible fluid and contaminant transport through a Porous Landfill using a numerical technique. A threedimensional finite element analysis technique was adopted for the solution. The problem was based on the Darcy’s Law and the Advection-Dispersion equation. The solutions of the Darcy’s and Advection-Dispersion equations were generated using Finite Element Analysis Software known as COMSOL Multiphysics. This simulation tool tracked the contaminant transport in the Landfill for 360 days at 10 days interval. It first modeled steady-state fluid flow by employing the Darcy’s Law Application Mode and then followed up with a transient solute-transport simulation by employing the Solute-Transport Application Mode from the Earth Science Module of COMSOL. The solution results obtained from this model were found to be in close agreement with reallife data obtained at the 130- million ton Bukit Tagar Mega Sanitary Landfill site, Selangor near Kuala Lumpur, Malaysia. This showed that the model can effectively predict the trends in the distributions of pollutants from a Municipal Solid Waste Landfill into nearby land and water sources. The model is thus applicable to the issues of environmental protection and safety of groundwater. http://jestec.taylors.edu.my/Vol%209%20Issue%204%20August%2014/Volume%20(9)%20Issue%20(4)%20477-489.pdf3D-numericalSimulationContaminantPorous mediumLandfillGround water safetyMunicipal waste management |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
ADEGUN, I. K. KOMOLAFE, O. D. AHMED KADHIM HUSSEIN OYEKALE, J.O. |
spellingShingle |
ADEGUN, I. K. KOMOLAFE, O. D. AHMED KADHIM HUSSEIN OYEKALE, J.O. A 3D FINITE ELEMENT ANALYSIS OF INCOMPRESSIBLE FLUID FLOW AND CONTAMINANT TRANSPORT THROUGH A POROUS LANDFILL Journal of Engineering Science and Technology 3D-numerical Simulation Contaminant Porous medium Landfill Ground water safety Municipal waste management |
author_facet |
ADEGUN, I. K. KOMOLAFE, O. D. AHMED KADHIM HUSSEIN OYEKALE, J.O. |
author_sort |
ADEGUN, I. K. |
title |
A 3D FINITE ELEMENT ANALYSIS OF INCOMPRESSIBLE FLUID FLOW AND CONTAMINANT TRANSPORT THROUGH A POROUS LANDFILL |
title_short |
A 3D FINITE ELEMENT ANALYSIS OF INCOMPRESSIBLE FLUID FLOW AND CONTAMINANT TRANSPORT THROUGH A POROUS LANDFILL |
title_full |
A 3D FINITE ELEMENT ANALYSIS OF INCOMPRESSIBLE FLUID FLOW AND CONTAMINANT TRANSPORT THROUGH A POROUS LANDFILL |
title_fullStr |
A 3D FINITE ELEMENT ANALYSIS OF INCOMPRESSIBLE FLUID FLOW AND CONTAMINANT TRANSPORT THROUGH A POROUS LANDFILL |
title_full_unstemmed |
A 3D FINITE ELEMENT ANALYSIS OF INCOMPRESSIBLE FLUID FLOW AND CONTAMINANT TRANSPORT THROUGH A POROUS LANDFILL |
title_sort |
3d finite element analysis of incompressible fluid flow and contaminant transport through a porous landfill |
publisher |
Taylor's University |
series |
Journal of Engineering Science and Technology |
issn |
1823-4690 |
publishDate |
2014-08-01 |
description |
The paper investigated the flow of incompressible fluid and contaminant transport through a Porous Landfill using a numerical technique. A threedimensional finite element analysis technique was adopted for the solution. The problem was based on the Darcy’s Law and the Advection-Dispersion equation. The solutions of the Darcy’s and Advection-Dispersion equations were
generated using Finite Element Analysis Software known as COMSOL Multiphysics. This simulation tool tracked the contaminant transport in the Landfill for 360 days at 10 days interval. It first modeled steady-state fluid flow by employing the Darcy’s Law Application Mode and then followed up with a transient solute-transport simulation by employing the Solute-Transport Application Mode from the Earth Science Module of COMSOL. The solution results obtained from this model were found to be in close agreement with reallife data obtained at the 130- million ton Bukit Tagar Mega Sanitary Landfill site, Selangor near Kuala Lumpur, Malaysia. This showed that the model can
effectively predict the trends in the distributions of pollutants from a Municipal Solid Waste Landfill into nearby land and water sources. The model is thus applicable to the issues of environmental protection and safety of groundwater. |
topic |
3D-numerical Simulation Contaminant Porous medium Landfill Ground water safety Municipal waste management |
url |
http://jestec.taylors.edu.my/Vol%209%20Issue%204%20August%2014/Volume%20(9)%20Issue%20(4)%20477-489.pdf |
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