Performance comparison and visualization with different computational softwares for predicting the reservoir pressure on oil production

This paper presents the performance comparison of some computation software for solving the boundary element method (BEM). BEM formulation is the numerical technique and high potential for solving the advance mathematical modeling to predict the production of oil well in arbitrarily shaped based on...

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Main Authors: Muhamad, W. Z. W. A., Alias, N., Ibrahim, M. N. M., Saipol, H. F. S., Junoh, A. K.
Format: Article
Published: International Research Publication House 2020
Subjects:
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author Muhamad, W. Z. W. A.
Alias, N.
Ibrahim, M. N. M.
Saipol, H. F. S.
Junoh, A. K.
author_facet Muhamad, W. Z. W. A.
Alias, N.
Ibrahim, M. N. M.
Saipol, H. F. S.
Junoh, A. K.
author_sort Muhamad, W. Z. W. A.
collection ePrints
description This paper presents the performance comparison of some computation software for solving the boundary element method (BEM). BEM formulation is the numerical technique and high potential for solving the advance mathematical modeling to predict the production of oil well in arbitrarily shaped based on multiple leases reservoir. The limitation of data validation for ensuring that a program meets the accuracy of the mathematical modeling is considered as the research motivation of this paper. Thus, based on this limitation, there are three steps involved to validate the accuracy of the oil production simulation process. In the first step, identify the mathematical modeling based on partial differential equation (PDE) with Poisson-elliptic type to perform the BEM discretization. In the second step, implement the simulation of the 2D BEM discretization using COMSOL Multiphysic and MATLAB programming languages. In the last step, analyze the numerical performance indicators for both programming languages by using the validation of Fortran programming. The performance comparisons of numerical analysis are investigated in terms of percentage error, comparison graph and 2D visualization of pressure on oil production of multiple leases reservoir. According to the performance comparison, the structured programming in Fortran programming is the alternative software for implementing the accurate numerical simulation of BEM. As a conclusion, high-level language for numerical computation and numerical performance evaluation are satisfied to prove that Fortran is well suited for capturing the visualization of the production of oil well in arbitrarily shaped.
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spelling utm.eprints-903262021-04-30T14:30:59Z http://eprints.utm.my/90326/ Performance comparison and visualization with different computational softwares for predicting the reservoir pressure on oil production Muhamad, W. Z. W. A. Alias, N. Ibrahim, M. N. M. Saipol, H. F. S. Junoh, A. K. QD Chemistry This paper presents the performance comparison of some computation software for solving the boundary element method (BEM). BEM formulation is the numerical technique and high potential for solving the advance mathematical modeling to predict the production of oil well in arbitrarily shaped based on multiple leases reservoir. The limitation of data validation for ensuring that a program meets the accuracy of the mathematical modeling is considered as the research motivation of this paper. Thus, based on this limitation, there are three steps involved to validate the accuracy of the oil production simulation process. In the first step, identify the mathematical modeling based on partial differential equation (PDE) with Poisson-elliptic type to perform the BEM discretization. In the second step, implement the simulation of the 2D BEM discretization using COMSOL Multiphysic and MATLAB programming languages. In the last step, analyze the numerical performance indicators for both programming languages by using the validation of Fortran programming. The performance comparisons of numerical analysis are investigated in terms of percentage error, comparison graph and 2D visualization of pressure on oil production of multiple leases reservoir. According to the performance comparison, the structured programming in Fortran programming is the alternative software for implementing the accurate numerical simulation of BEM. As a conclusion, high-level language for numerical computation and numerical performance evaluation are satisfied to prove that Fortran is well suited for capturing the visualization of the production of oil well in arbitrarily shaped. International Research Publication House 2020 Article PeerReviewed Muhamad, W. Z. W. A. and Alias, N. and Ibrahim, M. N. M. and Saipol, H. F. S. and Junoh, A. K. (2020) Performance comparison and visualization with different computational softwares for predicting the reservoir pressure on oil production. International Journal of Engineering Research and Technology, 13 (11). pp. 3799-3805. ISSN 0974-3154
spellingShingle QD Chemistry
Muhamad, W. Z. W. A.
Alias, N.
Ibrahim, M. N. M.
Saipol, H. F. S.
Junoh, A. K.
Performance comparison and visualization with different computational softwares for predicting the reservoir pressure on oil production
title Performance comparison and visualization with different computational softwares for predicting the reservoir pressure on oil production
title_full Performance comparison and visualization with different computational softwares for predicting the reservoir pressure on oil production
title_fullStr Performance comparison and visualization with different computational softwares for predicting the reservoir pressure on oil production
title_full_unstemmed Performance comparison and visualization with different computational softwares for predicting the reservoir pressure on oil production
title_short Performance comparison and visualization with different computational softwares for predicting the reservoir pressure on oil production
title_sort performance comparison and visualization with different computational softwares for predicting the reservoir pressure on oil production
topic QD Chemistry
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