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A Mathematical Model of Blood Flow in Merging Veins under a Magnetic Resonance Imaging Influence

Authors :
W. I. A. Okuyade
D. M. Abbey
T. M. Abbey
M. E. Abbey
Source :
European Journal of Mathematics and Statistics. 2:1-7
Publication Year :
2021
Publisher :
European Open Science Publishing, 2021.

Abstract

Venous blood flow through the superior and inferior vena cavae and via a merger to the right atrium of the heart is investigated. Based on the Newtonian assumption for blood, the model is developed using Boussinesq’s approximation for the continuity, momentum, energy, and mass diffusion equations, which are non-linear partial differential equations. The governing equations are non-dimensionalized and solved by the regular perturbation technique. Expressions for the concentration, temperature, and velocity are obtained, analyzed, and presented graphically and quantitatively, and discussed. The results show that an increase in the magnetic field strength and conflux angle produce fluctuations in the flow velocity.

Details

ISSN :
27365484
Volume :
2
Database :
OpenAIRE
Journal :
European Journal of Mathematics and Statistics
Accession number :
edsair.doi...........9d7c22e67e8b2c1cc345314418a08a22
Full Text :
https://doi.org/10.24018/ejmath.2021.2.3.35