Modeling and analysis of MHD two-phase blood flow through a stenosed artery having temperature-dependent viscosity
No Thumbnail Available
Date
2019-09
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
EPJP
Abstract
Present paper deals with MHD two-phase blood flow through a stenosed inclined artery with
viscous dissipation, Joule heating and k-th–order chemical reaction. The two layered model of blood flow
is considered in which core and plasma regions have temperature-dependent viscosity and constant viscosity,
respectively. Elliptic shaped stenosis is considered for both core and plasma regions, separately. A
continuous behaviour is assumed at interface of both core and plasma regions of blood flow with a no slip
condition at the wall of the artery. Governing coupled non-linear partial differential equations are solved
using a numerical technique named as single shooting method. The quantitative profile analysis is done for
velocity, temperature, concentration of blood flow over an entire arterial segment. The effects of various
parameters on flow characteristics for two-phase blood flow through stenosed artery are presented with
the help of graphs. Current findings are in a good agreement with the findings of previous recent research
studies.
Description
Keywords
Mathematics, MHD, Two-phase blood flow