Analysis of convective transport of temperature-dependent viscosity for non-newtonian erying powell fluid: A numerical approach
Non-Newtonian is a type of fluid that does not comply with the viscosity under the Law of Newton and is being widely used in industrial applications. These include those related to chemical industries, cosmetics manufacturing, pharmaceutical field, food processing, as well as oil and gas activities....
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Tech Science Press
2021
|
Subjects: | |
Online Access: | http://umpir.ump.edu.my/id/eprint/30240/6/Analysis%20of%20Convective%20Transport%20of%20Temperature.pdf |
_version_ | 1825813649013342208 |
---|---|
author | Aljabali, Ahlam Abdul Rahman, Mohd Kasim Nur Syamilah, Arifin Sharena, Mohamad Isa Noor Amalina Nisa, Ariffin |
author_facet | Aljabali, Ahlam Abdul Rahman, Mohd Kasim Nur Syamilah, Arifin Sharena, Mohamad Isa Noor Amalina Nisa, Ariffin |
author_sort | Aljabali, Ahlam |
collection | UMP |
description | Non-Newtonian is a type of fluid that does not comply with the viscosity under the Law of Newton and is being widely used in industrial applications. These include those related to chemical industries, cosmetics manufacturing, pharmaceutical field, food processing, as well as oil and gas activities. The inability of the conventional equations of Navier–Stokes to accurately depict rheological behavior for certain fluids led to an emergence study for non-Newtonian fluids’ models. In line with this, a mathematical model of forced convective flow on non-Newtonian Eyring Powell fluid under temperature-dependent viscosity (TDV) circumstance is formulated. The fluid model is embedded with the Newtonian heating (NH) boundary condition as a heating circumstance and is assumed to move over a stretching sheet acting vertically. Using appropriate
similarity variables, the respective model was converted into ordinary differential equations (ODE), which was later solved utilizing the Keller box approach. The present model is validated by comparing the existing output in literature at
certain special limiting cases, where the validation results display a firm agreement. The current outputs for the proposed model are shown in tabular and graphical form for variation of skin friction plus Nusselt number, velocity and temperature distribution, respectively. |
first_indexed | 2024-03-06T12:47:08Z |
format | Article |
id | UMPir30240 |
institution | Universiti Malaysia Pahang |
language | English |
last_indexed | 2024-03-06T12:47:08Z |
publishDate | 2021 |
publisher | Tech Science Press |
record_format | dspace |
spelling | UMPir302402020-12-30T02:29:53Z http://umpir.ump.edu.my/id/eprint/30240/ Analysis of convective transport of temperature-dependent viscosity for non-newtonian erying powell fluid: A numerical approach Aljabali, Ahlam Abdul Rahman, Mohd Kasim Nur Syamilah, Arifin Sharena, Mohamad Isa Noor Amalina Nisa, Ariffin QA Mathematics Non-Newtonian is a type of fluid that does not comply with the viscosity under the Law of Newton and is being widely used in industrial applications. These include those related to chemical industries, cosmetics manufacturing, pharmaceutical field, food processing, as well as oil and gas activities. The inability of the conventional equations of Navier–Stokes to accurately depict rheological behavior for certain fluids led to an emergence study for non-Newtonian fluids’ models. In line with this, a mathematical model of forced convective flow on non-Newtonian Eyring Powell fluid under temperature-dependent viscosity (TDV) circumstance is formulated. The fluid model is embedded with the Newtonian heating (NH) boundary condition as a heating circumstance and is assumed to move over a stretching sheet acting vertically. Using appropriate similarity variables, the respective model was converted into ordinary differential equations (ODE), which was later solved utilizing the Keller box approach. The present model is validated by comparing the existing output in literature at certain special limiting cases, where the validation results display a firm agreement. The current outputs for the proposed model are shown in tabular and graphical form for variation of skin friction plus Nusselt number, velocity and temperature distribution, respectively. Tech Science Press 2021 Article PeerReviewed pdf en cc_by_4 http://umpir.ump.edu.my/id/eprint/30240/6/Analysis%20of%20Convective%20Transport%20of%20Temperature.pdf Aljabali, Ahlam and Abdul Rahman, Mohd Kasim and Nur Syamilah, Arifin and Sharena, Mohamad Isa and Noor Amalina Nisa, Ariffin (2021) Analysis of convective transport of temperature-dependent viscosity for non-newtonian erying powell fluid: A numerical approach. Computers, Materials & Continua, 66 (1). pp. 675-689. ISSN 1546-2226. (Published) https://www.techscience.com/cmc/v66n1/40473 https://www.techscience.com/cmc/v66n1/40473 |
spellingShingle | QA Mathematics Aljabali, Ahlam Abdul Rahman, Mohd Kasim Nur Syamilah, Arifin Sharena, Mohamad Isa Noor Amalina Nisa, Ariffin Analysis of convective transport of temperature-dependent viscosity for non-newtonian erying powell fluid: A numerical approach |
title | Analysis of convective transport of temperature-dependent viscosity for non-newtonian erying powell fluid: A numerical approach |
title_full | Analysis of convective transport of temperature-dependent viscosity for non-newtonian erying powell fluid: A numerical approach |
title_fullStr | Analysis of convective transport of temperature-dependent viscosity for non-newtonian erying powell fluid: A numerical approach |
title_full_unstemmed | Analysis of convective transport of temperature-dependent viscosity for non-newtonian erying powell fluid: A numerical approach |
title_short | Analysis of convective transport of temperature-dependent viscosity for non-newtonian erying powell fluid: A numerical approach |
title_sort | analysis of convective transport of temperature dependent viscosity for non newtonian erying powell fluid a numerical approach |
topic | QA Mathematics |
url | http://umpir.ump.edu.my/id/eprint/30240/6/Analysis%20of%20Convective%20Transport%20of%20Temperature.pdf |
work_keys_str_mv | AT aljabaliahlam analysisofconvectivetransportoftemperaturedependentviscosityfornonnewtonianeryingpowellfluidanumericalapproach AT abdulrahmanmohdkasim analysisofconvectivetransportoftemperaturedependentviscosityfornonnewtonianeryingpowellfluidanumericalapproach AT nursyamilaharifin analysisofconvectivetransportoftemperaturedependentviscosityfornonnewtonianeryingpowellfluidanumericalapproach AT sharenamohamadisa analysisofconvectivetransportoftemperaturedependentviscosityfornonnewtonianeryingpowellfluidanumericalapproach AT nooramalinanisaariffin analysisofconvectivetransportoftemperaturedependentviscosityfornonnewtonianeryingpowellfluidanumericalapproach |