Navier slip and suction/injection effects on oscillatory flow of nanofluid with fluid-particle interaction in a channel
In this paper, the slip and porosity effects on the channel walls are studied for the oscillatory flow of heat-absorbing/generating dusty nanofluid flowing through a porous medium. The channel is vertical and exposed to the transverse magnetic field and thermal radiation. The base fluid is water wit...
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2021
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oai:doaj.org-article:8187e8cad4ac4edd9594018e6dc20a772021-11-12T11:44:34ZNavier slip and suction/injection effects on oscillatory flow of nanofluid with fluid-particle interaction in a channel2267-124210.1051/e3sconf/202132104002https://doaj.org/article/8187e8cad4ac4edd9594018e6dc20a772021-01-01T00:00:00Zhttps://www.e3s-conferences.org/articles/e3sconf/pdf/2021/97/e3sconf_icchmt2021_04002.pdfhttps://doaj.org/toc/2267-1242In this paper, the slip and porosity effects on the channel walls are studied for the oscillatory flow of heat-absorbing/generating dusty nanofluid flowing through a porous medium. The channel is vertical and exposed to the transverse magnetic field and thermal radiation. The base fluid is water with silver as nanoparticles. The basic equations of the flow problem, which appeared to be dimensional, are remodelled in the dimension-less form with the help of non-dimensional variables. The obtained equations are solved analytically using the variable separable method. The graphs are presented to show the impact of these parameters on the flow fields, skin friction, heat transmission rate and discussed in detail. Results reveal that the flow velocities of fluid and particles for suction are greater than in the case of injection. The fluid velocity upsurges with the improved values of the velocity slip parameter.Hasnain JafarSheikh MariamAbbas ZaheerEDP Sciencesarticlenanofluiddust particlesoscillatory flowsuction/injectionheat absorption/generationEnvironmental sciencesGE1-350ENFRE3S Web of Conferences, Vol 321, p 04002 (2021) |
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nanofluid dust particles oscillatory flow suction/injection heat absorption/generation Environmental sciences GE1-350 |
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nanofluid dust particles oscillatory flow suction/injection heat absorption/generation Environmental sciences GE1-350 Hasnain Jafar Sheikh Mariam Abbas Zaheer Navier slip and suction/injection effects on oscillatory flow of nanofluid with fluid-particle interaction in a channel |
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In this paper, the slip and porosity effects on the channel walls are studied for the oscillatory flow of heat-absorbing/generating dusty nanofluid flowing through a porous medium. The channel is vertical and exposed to the transverse magnetic field and thermal radiation. The base fluid is water with silver as nanoparticles. The basic equations of the flow problem, which appeared to be dimensional, are remodelled in the dimension-less form
with the help of non-dimensional variables. The obtained equations are solved analytically using the variable separable method. The graphs are presented to show the impact of these parameters on the flow fields, skin friction, heat transmission rate and discussed in detail. Results reveal that the flow velocities of fluid and particles for suction are greater than in the case of injection. The fluid velocity upsurges with the improved values of the
velocity slip parameter. |
format |
article |
author |
Hasnain Jafar Sheikh Mariam Abbas Zaheer |
author_facet |
Hasnain Jafar Sheikh Mariam Abbas Zaheer |
author_sort |
Hasnain Jafar |
title |
Navier slip and suction/injection effects on oscillatory flow of nanofluid with fluid-particle interaction in a channel |
title_short |
Navier slip and suction/injection effects on oscillatory flow of nanofluid with fluid-particle interaction in a channel |
title_full |
Navier slip and suction/injection effects on oscillatory flow of nanofluid with fluid-particle interaction in a channel |
title_fullStr |
Navier slip and suction/injection effects on oscillatory flow of nanofluid with fluid-particle interaction in a channel |
title_full_unstemmed |
Navier slip and suction/injection effects on oscillatory flow of nanofluid with fluid-particle interaction in a channel |
title_sort |
navier slip and suction/injection effects on oscillatory flow of nanofluid with fluid-particle interaction in a channel |
publisher |
EDP Sciences |
publishDate |
2021 |
url |
https://doaj.org/article/8187e8cad4ac4edd9594018e6dc20a77 |
work_keys_str_mv |
AT hasnainjafar navierslipandsuctioninjectioneffectsonoscillatoryflowofnanofluidwithfluidparticleinteractioninachannel AT sheikhmariam navierslipandsuctioninjectioneffectsonoscillatoryflowofnanofluidwithfluidparticleinteractioninachannel AT abbaszaheer navierslipandsuctioninjectioneffectsonoscillatoryflowofnanofluidwithfluidparticleinteractioninachannel |
_version_ |
1718430561792425984 |