Zobrazeno 1 - 10
of 197
pro vyhledávání: '"R. Ponalagusamy"'
Autor:
R. Ponalagusamy, Ramakrishna Manchi
Publikováno v:
SN Applied Sciences, Vol 3, Iss 4, Pp 1-21 (2021)
Abstract The present communication presents a theoretical study of blood flow through a stenotic artery with a porous wall comprising Brinkman and Darcy layers. The governing equations describing the flow subjected to the boundary conditions have bee
Externí odkaz:
https://doaj.org/article/a1eff05183e14cfab258df3958ddc8fe
Autor:
S. Priyadharshini, R. Ponalagusamy
Publikováno v:
Applied Bionics and Biomechanics, Vol 2015 (2015)
An analysis of blood flow through a tapered artery with stenosis and dilatation has been carried out where the blood is treated as incompressible Herschel-Bulkley fluid. A comparison between numerical values and analytical values of pressure gradient
Externí odkaz:
https://doaj.org/article/43d3e9eb45844050be57fb6c63a3bd6e
Autor:
R. Ponalagusamy, D. Murugan
Publikováno v:
Chinese Journal of Physics. 81:243-269
Autor:
R. Ponalagusamy, D. Murugan
Publikováno v:
Korea-Australia Rheology Journal. 34:69-90
Autor:
D. Murugan, R. Ponalagusamy
Publikováno v:
Proceedings of the National Academy of Sciences, India Section A: Physical Sciences. 91:675-680
In this paper, the dispersion of a solute in blood flow in a tube has been discussed. Treating blood as thixotropic fluid modell, the presence of homogeneous chemical reaction has been considered in the analysis by adopting Taylor’s approach, and t
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Publikováno v:
International Journal of Applied and Computational Mathematics. 8
Autor:
Ramakrishna Manchi, R. Ponalagusamy
Publikováno v:
Archive of Applied Mechanics. 91:3421-3447
A theoretical study on the pulsatile flow of Sutterby nanofluid in an inclined porous tapered arterial stenosis under the simultaneous impact of electro-osmotic , magnetohydrodynamic and periodic body forces with slip effect at the arterial wall is p
Publikováno v:
International Journal of Applied and Computational Mathematics. 8
Publikováno v:
Korea-Australia Rheology Journal. 32:287-299
The mathematical model of hydrodynamic dispersion through a porous medium is developed in the presence of transversely applied magnetic fields and axial harmonic pressure gradient. The solute introduce into the flow is experienced a first-order chemi