Effect of Varying Viscosity on Two-Layer Model of Pulsatile Flow through Blood Vessels with Porous Region near Walls
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Title
Effect of Varying Viscosity on Two-Layer Model of Pulsatile Flow through Blood Vessels with Porous Region near Walls
Authors
Keywords
Casson fluid, Porous media flow, Porous tube, Glycocalyx layer, Permeability, Variable viscosity, 76A05, 76M45, 76Z05
Journal
TRANSPORT IN POROUS MEDIA
Volume -, Issue -, Pages -
Publisher
Springer Science and Business Media LLC
Online
2019-06-11
DOI
10.1007/s11242-019-01302-1
References
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Related references
Note: Only part of the references are listed.- Effect of varying viscosity on a two-layer model of the blood flow through porous blood vessels
- (2019) Ashish Tiwari et al. European Physical Journal Plus
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- (2014) Noreen Sher Akbar et al. European Physical Journal Plus
- PULSATILE FLOW IN A CYLINDRICAL TUBE WITH POROUS WALLS: APPLICATIONS TO BLOOD FLOW
- (2013) Ashish Tiwari et al. JOURNAL OF POROUS MEDIA
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- (2013) R. Ponalagusamy et al. MECCANICA
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- (2013) Curtis Boodoo et al. RHEOLOGICA ACTA
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- (2013) J. Venkatesan et al. Journal of Applied Mathematics
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- (2013) R. Ellahi et al. Applied Nanoscience
- A study on two-layered model (Casson–Newtonian) for blood flow through an arterial stenosis: Axially variable slip velocity at the wall
- (2011) R. Ponalagusamy et al. JOURNAL OF THE FRANKLIN INSTITUTE-ENGINEERING AND APPLIED MATHEMATICS
- Unsteady Two-Dimensional Blood Flow in Porous Artery with Multi-Irregular Stenoses
- (2011) Obaid Ullah Mehmood et al. TRANSPORT IN POROUS MEDIA
- Hydrodynamic permeability of aggregates of porous particles with an impermeable core
- (2010) Satya Deo et al. ADVANCES IN COLLOID AND INTERFACE SCIENCE
- Two-fluid Casson model for pulsatile blood flow through stenosed arteries: A theoretical model
- (2009) D.S. Sankar et al. Communications in Nonlinear Science and Numerical Simulation
- Mathematical analysis of blood flow through an arterial segment with time‐dependent stenosis
- (2008) J.C. Misra et al. Mathematical Modelling and Analysis
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