Enactment of implicit two-step Obrechkoff-type block method on unsteady sedimentation analysis of spherical particles in Newtonian fluid media

Purpose: The analysis of the characteristics of particles motion is considered in this article, where a model which studies a Newtonian fluid media with specific interest on the analysis of unsteady sedimentation of particles is considered. The numerical solution of this first order differential equ...

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Main Authors: Seikh, Asiful H., Adeyeye, Oluwaseun, Omar, Zurni, Raza, Jawad, Rahimi-Gorji, Mohammad, Alharthi, Nabeel, Khan, Ilyas
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語言:English
出版: Published by Elsevier 2019
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在線閱讀:http://repo.uum.edu.my/27938/1/JMC%20293%202019%201%2027.pdf
http://repo.uum.edu.my/27938/
http://doi.org/10.1016/j.molliq.2019.111416
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spelling my.uum.repo.279382020-12-01T06:02:13Z http://repo.uum.edu.my/27938/ Enactment of implicit two-step Obrechkoff-type block method on unsteady sedimentation analysis of spherical particles in Newtonian fluid media Seikh, Asiful H. Adeyeye, Oluwaseun Omar, Zurni Raza, Jawad Rahimi-Gorji, Mohammad Alharthi, Nabeel Khan, Ilyas QA75 Electronic computers. Computer science Purpose: The analysis of the characteristics of particles motion is considered in this article, where a model which studies a Newtonian fluid media with specific interest on the analysis of unsteady sedimentation of particles is considered. The numerical solution of this first order differential equation model using an Obrechkoff-type block method is presented. Methodology: The algorithm for the conventional Nyström -type multistep scheme is considered with specific parameter choices in order to obtain the main k-step Obrechkoff-type block method and the required additional method. The unknown coefficients of these methods are obtained by using the concept of Taylor series expansion to obtain the required schemes for the block method which were combined as simultaneous integrators for the solution of the differential equation model.Findings: The block method gave highly accurate results as compared with the exact solution of the model. Furthermore, at selected values of the physical properties of nanoparticles, the solutions using the two-step Obrechkoff-type block method was compared with past literatures and the results were seen to be in agreement. The influence of the physical parameters on terminal velocity is also discussed. Published by Elsevier 2019 Article PeerReviewed application/pdf en http://repo.uum.edu.my/27938/1/JMC%20293%202019%201%2027.pdf Seikh, Asiful H. and Adeyeye, Oluwaseun and Omar, Zurni and Raza, Jawad and Rahimi-Gorji, Mohammad and Alharthi, Nabeel and Khan, Ilyas (2019) Enactment of implicit two-step Obrechkoff-type block method on unsteady sedimentation analysis of spherical particles in Newtonian fluid media. Journal of Molecular Liquids. pp. 1-27. ISSN 01677322 http://doi.org/10.1016/j.molliq.2019.111416 doi:10.1016/j.molliq.2019.111416
institution Universiti Utara Malaysia
building UUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Utara Malaysia
content_source UUM Institutional Repository
url_provider http://repo.uum.edu.my/
language English
topic QA75 Electronic computers. Computer science
spellingShingle QA75 Electronic computers. Computer science
Seikh, Asiful H.
Adeyeye, Oluwaseun
Omar, Zurni
Raza, Jawad
Rahimi-Gorji, Mohammad
Alharthi, Nabeel
Khan, Ilyas
Enactment of implicit two-step Obrechkoff-type block method on unsteady sedimentation analysis of spherical particles in Newtonian fluid media
description Purpose: The analysis of the characteristics of particles motion is considered in this article, where a model which studies a Newtonian fluid media with specific interest on the analysis of unsteady sedimentation of particles is considered. The numerical solution of this first order differential equation model using an Obrechkoff-type block method is presented. Methodology: The algorithm for the conventional Nyström -type multistep scheme is considered with specific parameter choices in order to obtain the main k-step Obrechkoff-type block method and the required additional method. The unknown coefficients of these methods are obtained by using the concept of Taylor series expansion to obtain the required schemes for the block method which were combined as simultaneous integrators for the solution of the differential equation model.Findings: The block method gave highly accurate results as compared with the exact solution of the model. Furthermore, at selected values of the physical properties of nanoparticles, the solutions using the two-step Obrechkoff-type block method was compared with past literatures and the results were seen to be in agreement. The influence of the physical parameters on terminal velocity is also discussed.
format Article
author Seikh, Asiful H.
Adeyeye, Oluwaseun
Omar, Zurni
Raza, Jawad
Rahimi-Gorji, Mohammad
Alharthi, Nabeel
Khan, Ilyas
author_facet Seikh, Asiful H.
Adeyeye, Oluwaseun
Omar, Zurni
Raza, Jawad
Rahimi-Gorji, Mohammad
Alharthi, Nabeel
Khan, Ilyas
author_sort Seikh, Asiful H.
title Enactment of implicit two-step Obrechkoff-type block method on unsteady sedimentation analysis of spherical particles in Newtonian fluid media
title_short Enactment of implicit two-step Obrechkoff-type block method on unsteady sedimentation analysis of spherical particles in Newtonian fluid media
title_full Enactment of implicit two-step Obrechkoff-type block method on unsteady sedimentation analysis of spherical particles in Newtonian fluid media
title_fullStr Enactment of implicit two-step Obrechkoff-type block method on unsteady sedimentation analysis of spherical particles in Newtonian fluid media
title_full_unstemmed Enactment of implicit two-step Obrechkoff-type block method on unsteady sedimentation analysis of spherical particles in Newtonian fluid media
title_sort enactment of implicit two-step obrechkoff-type block method on unsteady sedimentation analysis of spherical particles in newtonian fluid media
publisher Published by Elsevier
publishDate 2019
url http://repo.uum.edu.my/27938/1/JMC%20293%202019%201%2027.pdf
http://repo.uum.edu.my/27938/
http://doi.org/10.1016/j.molliq.2019.111416
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