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Mathematical modelling of peristaltic propulsion of viscoplastic bio-fluids.

Author
Abstract
:

This article studies theoretically the transportation of rheological viscoplastic fluids through physiological vessels by continuous muscle contraction and relaxation, that is, peristalsis. Both cases of planar and cylindrical physiological vessels are considered. A mathematical model is developed under long wavelength and low Reynolds number approximations. Expressions for axial velocity in core region, axial velocity in plug flow region, volume flow rate and pressure gradient in non-dimensional form are obtained. A comparative study of velocity profiles, pressure distribution, friction force and mechanical efficiency for different viscoplastic liquids is conducted. The influence of width of plug flow region, shear rate strain index and yield stress index on the pressure distribution, friction force and mechanical efficiency is elaborated. The study is relevant to gastric fluid mechanics and also non-Newtonian biomimetic pump hazardous waste systems exploiting peristaltic mechanisms.

Year of Publication
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2014
Journal
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Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine
Volume
:
228
Issue
:
1
Number of Pages
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67-88
ISSN Number
:
0954-4119
URL
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http://journals.sagepub.com/doi/full/10.1177/0954411913511584?url_ver=Z39.88-2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%3dpubmed
DOI
:
10.1177/0954411913511584
Short Title
:
Proc Inst Mech Eng H
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