Open Access
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volume 60 issue 5 pages 4787-4796

Fractional simulation for Darcy-Forchheimer hybrid nanoliquid flow with partial slip over a spinning disk

Yi Xia Li 1
Taseer Muhammad 2, 3
Muhammad Bilal 4
Muhammad Azam Khan 5, 6
Ali Ahmadian 7
Antonio Pansera 8
Publication typeJournal Article
Publication date2021-10-01
scimago Q1
wos Q1
SJR1.037
CiteScore12.9
Impact factor6.8
ISSN11100168, 20902670
General Engineering
Abstract
The present effort elaborates the fractional analyses for Darcy-Forchheimer hybrid nanoliquid flow over a porous spinning disk. Temperature and concentration slip conditions are utilized at the surface of the spinning disk. A specific type of nanoparticles known as Silver- Ag and Magnesium-oxide MgO is added to the base fluid, to synthesis the hybrid nanoliquid. By using Karman’s approach, the system of partial differential equations is depleted into a dimensionless system of differential equations. The obtained equations are further diminished to the first-order differential equation via selecting variables. To develop the fractional solution, the proposed model has been set up by Matlab fractional code Fde12. For accuracy and validity of the resulting framework, the outputs are compared with the fast-approaching numerical Matlab scheme boundary value solver (bvp4c). The impact of several flow constraints versus velocity, mass and thermal energy profiles have been portrayed and discussed. Magnesium oxide MgO compound is consists of Mg 2+ and O 2− ions, together bonded by a strong ionic bond, which can be synthesized by pyrolysis of magnesium hydroxide Mg (OH) 2 and MgCO 3 (magnesium carbonate) at a very high temperature (700–1500 °C). It is more convenient for refractory and electrical applications. Similarly, the antibacterial upshots of silver Ag nano-size particles could be used to manage bacterial growth in several applications, such as dental work, burns and wound treatment, surgery applications and biomedical apparatus.
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GOST Copy
Li Y. X. et al. Fractional simulation for Darcy-Forchheimer hybrid nanoliquid flow with partial slip over a spinning disk // AEJ - Alexandria Engineering Journal. 2021. Vol. 60. No. 5. pp. 4787-4796.
GOST all authors (up to 50) Copy
Li Y. X., Muhammad T., Bilal M., Khan M. A., Ahmadian A., Pansera A. Fractional simulation for Darcy-Forchheimer hybrid nanoliquid flow with partial slip over a spinning disk // AEJ - Alexandria Engineering Journal. 2021. Vol. 60. No. 5. pp. 4787-4796.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1016/j.aej.2021.03.062
UR - https://doi.org/10.1016/j.aej.2021.03.062
TI - Fractional simulation for Darcy-Forchheimer hybrid nanoliquid flow with partial slip over a spinning disk
T2 - AEJ - Alexandria Engineering Journal
AU - Li, Yi Xia
AU - Muhammad, Taseer
AU - Bilal, Muhammad
AU - Khan, Muhammad Azam
AU - Ahmadian, Ali
AU - Pansera, Antonio
PY - 2021
DA - 2021/10/01
PB - Alexandria University
SP - 4787-4796
IS - 5
VL - 60
SN - 1110-0168
SN - 2090-2670
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2021_Li,
author = {Yi Xia Li and Taseer Muhammad and Muhammad Bilal and Muhammad Azam Khan and Ali Ahmadian and Antonio Pansera},
title = {Fractional simulation for Darcy-Forchheimer hybrid nanoliquid flow with partial slip over a spinning disk},
journal = {AEJ - Alexandria Engineering Journal},
year = {2021},
volume = {60},
publisher = {Alexandria University},
month = {oct},
url = {https://doi.org/10.1016/j.aej.2021.03.062},
number = {5},
pages = {4787--4796},
doi = {10.1016/j.aej.2021.03.062}
}
MLA
Cite this
MLA Copy
Li, Yi Xia, et al. “Fractional simulation for Darcy-Forchheimer hybrid nanoliquid flow with partial slip over a spinning disk.” AEJ - Alexandria Engineering Journal, vol. 60, no. 5, Oct. 2021, pp. 4787-4796. https://doi.org/10.1016/j.aej.2021.03.062.