Comparative analysis of Hamilton–Crosser and Yamada–Ota models of tri-hybrid nanofluid flow inside a stenotic artery with activation energy and convective conditions
Author:
Funder
Politechnika Wrocławska
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s10973-023-12803-z.pdf
Reference43 articles.
1. Ellahi R, Rahman SU, Nadeem S. Blood flow of Jeffrey fluid in a catherized tapered artery with the suspension of nanoparticles. Phys Lett A. 2014;378(40):2973–80.
2. Ijaz S, Nadeem S. Examination of nanoparticles as a drug carrier on blood flow through catheterized composite stenosed artery with permeable walls. Comput Methods Progr Biomed. 2016;133:83–94.
3. Sarwar L, Hussain A. Flow characteristics of Au-blood nanofluid in stenotic artery. Int Commun Heat Mass Transf. 2021;127: 105486.
4. Shojaie Chahregh H, Dinarvand S. TiO2-Ag/blood hybrid nanofluid flow through an artery with applications of drug delivery and blood circulation in the respiratory system. Int J Numer Meth Heat Fluid Flow. 2020;30(11):4775–96.
5. Abdelsalam SI, Mekheimer KS, Zaher AZ. Alterations in blood stream by electroosmotic forces of hybrid nanofluid through diseased artery: aneurysmal/stenosed segment. Chin J Phys. 2020;67:314–29.
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