Bioconvection Peristaltic Transport of Nanofluid in a Channel containing Gyrotactic microorganism
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@Article{JICS-14-134,
author = {Asha. S. K and Sunitha G},
title = {Bioconvection Peristaltic Transport of Nanofluid in a Channel containing Gyrotactic microorganism},
journal = {Journal of Information and Computing Science},
year = {2024},
volume = {14},
number = {2},
pages = {134--148},
abstract = { This research paper is deals with the behavior of gyrotactic in peristaltic transport of nano
Eyring-Powell fluid in non-uniform channel. The advantages of adding motile micro-organism to the
nanofluid suspension enhanced the heat transfer, mass transfer and improve the nanofluids stability. The
governing equations have been fabricated for long wavelength and low Reynolds number assumptions. The
solutions have been described for pressure gradient, temperature, nanoparticle concentration and density of
motile microorganism equations and solved by using powerful technique known as Homotopy Analysis
Method (HAM). Results are reported for different values of the some significant parameters on peristaltic
transport through a non-uniform channel and obtained results are displayed in graphs.
},
issn = {1746-7659},
doi = {https://doi.org/},
url = {http://global-sci.org/intro/article_detail/jics/22423.html}
}
TY - JOUR
T1 - Bioconvection Peristaltic Transport of Nanofluid in a Channel containing Gyrotactic microorganism
AU - Asha. S. K and Sunitha G
JO - Journal of Information and Computing Science
VL - 2
SP - 134
EP - 148
PY - 2024
DA - 2024/01
SN - 14
DO - http://doi.org/
UR - https://global-sci.org/intro/article_detail/jics/22423.html
KW - Biconvection, gyrotactic microorganism, Peristaltic flow, Eyring-Powell fluid model.
AB - This research paper is deals with the behavior of gyrotactic in peristaltic transport of nano
Eyring-Powell fluid in non-uniform channel. The advantages of adding motile micro-organism to the
nanofluid suspension enhanced the heat transfer, mass transfer and improve the nanofluids stability. The
governing equations have been fabricated for long wavelength and low Reynolds number assumptions. The
solutions have been described for pressure gradient, temperature, nanoparticle concentration and density of
motile microorganism equations and solved by using powerful technique known as Homotopy Analysis
Method (HAM). Results are reported for different values of the some significant parameters on peristaltic
transport through a non-uniform channel and obtained results are displayed in graphs.
Asha. S. K and Sunitha G. (2024). Bioconvection Peristaltic Transport of Nanofluid in a Channel containing Gyrotactic microorganism.
Journal of Information and Computing Science. 14 (2).
134-148.
doi:
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