Unsteady blood flow with nanoparticles through stenosed arteries in the presence of periodic body acceleration
The effects of nanoparticles such as Fe304,Ti02, and Cu on blood flow inside a stenosed artery are studied. In this study, blood was modelled as non-Newtonian Bingham plastic fluid subjected to periodic body acceleration and slip velocity. The flow governing equations were solved analytically by...
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my.uthm.eprints.70422022-05-24T01:37:19Z http://eprints.uthm.edu.my/7042/ Unsteady blood flow with nanoparticles through stenosed arteries in the presence of periodic body acceleration Jamil, Dzuliana Fatin Roslan, Rozaini Abdulhameed, Mohammed Che-Him, Norziha Sufahani, Suliadi Firdaus Mohamad, Mahathir Kamardan, Muhamad Ghazali T Technology (General) The effects of nanoparticles such as Fe304,Ti02, and Cu on blood flow inside a stenosed artery are studied. In this study, blood was modelled as non-Newtonian Bingham plastic fluid subjected to periodic body acceleration and slip velocity. The flow governing equations were solved analytically by using the perturbation method. By using the numerical approaches, the physiological parameters were analyzed, and the blood flow velocity distributions were generated graphically and discussed. From the flow results, the flow speed increases as slip velocity increases and decreases as the values of yield stress increases. 2018 Conference or Workshop Item PeerReviewed text en http://eprints.uthm.edu.my/7042/1/P10165_d897055a281d1b1a69fcda9f901cbd95.pdf Jamil, Dzuliana Fatin and Roslan, Rozaini and Abdulhameed, Mohammed and Che-Him, Norziha and Sufahani, Suliadi Firdaus and Mohamad, Mahathir and Kamardan, Muhamad Ghazali (2018) Unsteady blood flow with nanoparticles through stenosed arteries in the presence of periodic body acceleration. In: ISMAP 2017, October 28, 2017, Batu Pahat, Johor. |
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T Technology (General) Jamil, Dzuliana Fatin Roslan, Rozaini Abdulhameed, Mohammed Che-Him, Norziha Sufahani, Suliadi Firdaus Mohamad, Mahathir Kamardan, Muhamad Ghazali Unsteady blood flow with nanoparticles through stenosed arteries in the presence of periodic body acceleration |
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The effects of nanoparticles such as Fe304,Ti02, and Cu on blood flow inside a stenosed artery
are studied. In this study, blood was modelled as non-Newtonian Bingham plastic fluid subjected to periodic
body acceleration and slip velocity. The flow governing equations were solved analytically by using the
perturbation method. By using the numerical approaches, the physiological parameters were analyzed, and
the blood flow velocity distributions were generated graphically and discussed. From the flow results, the
flow speed increases as slip velocity increases and decreases as the values of yield stress increases. |
format |
Conference or Workshop Item |
author |
Jamil, Dzuliana Fatin Roslan, Rozaini Abdulhameed, Mohammed Che-Him, Norziha Sufahani, Suliadi Firdaus Mohamad, Mahathir Kamardan, Muhamad Ghazali |
author_facet |
Jamil, Dzuliana Fatin Roslan, Rozaini Abdulhameed, Mohammed Che-Him, Norziha Sufahani, Suliadi Firdaus Mohamad, Mahathir Kamardan, Muhamad Ghazali |
author_sort |
Jamil, Dzuliana Fatin |
title |
Unsteady blood flow with nanoparticles through stenosed arteries in the presence of periodic body acceleration |
title_short |
Unsteady blood flow with nanoparticles through stenosed arteries in the presence of periodic body acceleration |
title_full |
Unsteady blood flow with nanoparticles through stenosed arteries in the presence of periodic body acceleration |
title_fullStr |
Unsteady blood flow with nanoparticles through stenosed arteries in the presence of periodic body acceleration |
title_full_unstemmed |
Unsteady blood flow with nanoparticles through stenosed arteries in the presence of periodic body acceleration |
title_sort |
unsteady blood flow with nanoparticles through stenosed arteries in the presence of periodic body acceleration |
publishDate |
2018 |
url |
http://eprints.uthm.edu.my/7042/1/P10165_d897055a281d1b1a69fcda9f901cbd95.pdf http://eprints.uthm.edu.my/7042/ |
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1738581568600932352 |
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13.211869 |