Non-linear peristaltic flow of Walter's B fluid in an asymmetric channel with heat transfer and chemical reactions
In this paper, effects of heat and mass transfer on peristaltic transport of Walter's B fluid in an asymmetric channel are investigated. The governing equations are solved using regular perturbation method by taking wave number as a small parameter. Expressions for the stream function, temperat...
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Serbian Society of Heat Transfer Engineers
2014
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my.utm.542542018-08-03T08:50:50Z http://eprints.utm.my/id/eprint/54254/ Non-linear peristaltic flow of Walter's B fluid in an asymmetric channel with heat transfer and chemical reactions Mehmood, Obaid Ullah Mustapha, Norzieha Shafie, Sharidan Q Science In this paper, effects of heat and mass transfer on peristaltic transport of Walter's B fluid in an asymmetric channel are investigated. The governing equations are solved using regular perturbation method by taking wave number as a small parameter. Expressions for the stream function, temperature distribution, heat transfer coefficient, and mass concentration are presented in explicit form. Solutions are analyzed graphically for different values of arising parameters such as viscoelastic parameter, Prandtl, Eckert, Soret, Schmidt and Reynolds number. It has been found that these parameters considerably affect the considered flow characteristics. Results show that with an increase in Eckert and Prandtl number temperature and heat transfer coefficient increase while mass concentration decreases. Further, Mass concentration also decreases with increasing Soret and Schmidt number Serbian Society of Heat Transfer Engineers 2014 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/54254/1/SharidanShafie2014_Non-linearperistalticflow.pdf Mehmood, Obaid Ullah and Mustapha, Norzieha and Shafie, Sharidan (2014) Non-linear peristaltic flow of Walter's B fluid in an asymmetric channel with heat transfer and chemical reactions. Thermal Science, 18 (4). pp. 1095-1107. ISSN 0354-9836 https://doi.org/10.2298/TSCI110921096M DOI: 10.2298/TSCI110921096M |
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Q Science Mehmood, Obaid Ullah Mustapha, Norzieha Shafie, Sharidan Non-linear peristaltic flow of Walter's B fluid in an asymmetric channel with heat transfer and chemical reactions |
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In this paper, effects of heat and mass transfer on peristaltic transport of Walter's B fluid in an asymmetric channel are investigated. The governing equations are solved using regular perturbation method by taking wave number as a small parameter. Expressions for the stream function, temperature distribution, heat transfer coefficient, and mass concentration are presented in explicit form. Solutions are analyzed graphically for different values of arising parameters such as viscoelastic parameter, Prandtl, Eckert, Soret, Schmidt and Reynolds number. It has been found that these parameters considerably affect the considered flow characteristics. Results show that with an increase in Eckert and Prandtl number temperature and heat transfer coefficient increase while mass concentration decreases. Further, Mass concentration also decreases with increasing Soret and Schmidt number |
format |
Article |
author |
Mehmood, Obaid Ullah Mustapha, Norzieha Shafie, Sharidan |
author_facet |
Mehmood, Obaid Ullah Mustapha, Norzieha Shafie, Sharidan |
author_sort |
Mehmood, Obaid Ullah |
title |
Non-linear peristaltic flow of Walter's B fluid in an asymmetric channel with heat transfer and chemical reactions |
title_short |
Non-linear peristaltic flow of Walter's B fluid in an asymmetric channel with heat transfer and chemical reactions |
title_full |
Non-linear peristaltic flow of Walter's B fluid in an asymmetric channel with heat transfer and chemical reactions |
title_fullStr |
Non-linear peristaltic flow of Walter's B fluid in an asymmetric channel with heat transfer and chemical reactions |
title_full_unstemmed |
Non-linear peristaltic flow of Walter's B fluid in an asymmetric channel with heat transfer and chemical reactions |
title_sort |
non-linear peristaltic flow of walter's b fluid in an asymmetric channel with heat transfer and chemical reactions |
publisher |
Serbian Society of Heat Transfer Engineers |
publishDate |
2014 |
url |
http://eprints.utm.my/id/eprint/54254/1/SharidanShafie2014_Non-linearperistalticflow.pdf http://eprints.utm.my/id/eprint/54254/ https://doi.org/10.2298/TSCI110921096M |
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1643653505415643136 |
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13.251813 |