Effect of body acceleration on pulsatile flow of Casson fluid through a mild stenosed artery
The pulsatile flow of blood through a stenosed artery under the influence of external periodic body acceleration is studied. The effect of non-Newtonian nature of blood in small blood vessels has been taken into account by modeling blood as a Casson fluid. The non-linear coupled equations governing...
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Veröffentlicht in: | Korea-Australia rheology journal 2008, 20(4), , pp.189-196 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The pulsatile flow of blood through a stenosed artery under the influence of external periodic body acceleration
is studied. The effect of non-Newtonian nature of blood in small blood vessels has been taken into
account by modeling blood as a Casson fluid. The non-linear coupled equations governing the flow are
solved using perturbation analysis assuming that the Womersley frequency parameter is small which is valid
for physiological situations in small blood vessels. The effect of pulsatility, stenosis, body acceleration, yield
stress of the fluid and pressure gradient on the yield plane locations, velocity distribution, flow rate, shear
stress and frictional resistance are investigated. It is noticed that the effect of yield stress and stenosis is to
reduce flow rate and increase flow resistance. The impact of body acceleration is to enhance the flow rate
and reduces resistance to flow. KCI Citation Count: 23 |
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ISSN: | 1226-119X 2093-7660 |