Javascript must be enabled to continue!
Solute Dispersion in an Unsteady Herschel-Bulkley Flow through an Inclined Stenosed Arter
View through CrossRef
Motivated by the concept of blood flow in a stenosed artery, this present research investigates the influence of stenosis shape in terms of height and arterial inclination on the blood flow and solute dispersion behaviour through an inclined stenosed artery. The blood rheology is depicted using the Herschel-Bulkley model in a laminar, axisymmetric and incompressible unsteady flow through the stenosed artery. The effect of stenosis is focused on the stenosis height for both sine and cosine stenosis. Parameters of arterial inclination are also investigated to observe the effect of inclination on the blood velocity and dispersion function. Perturbation method is adopted in solving for the blood flow velocity under the effect of stenosis height and arterial inclination. The dispersion function of solute dispersion is solved using the obtained blood velocity by adopting the Generalized Dispersion Model (GDM) in obtaining steady dispersion functions. This present study shows that the increase in stenosis height decreases both blood velocity and dispersion function. Meanwhile, the increase in arterial inclination increases the blood velocity and dispersion function. The effect of stenosis height also affects blood velocity and dispersion function for the sine stenosis more than the cosine stenosis.
Akademia Baru Publishing
Title: Solute Dispersion in an Unsteady Herschel-Bulkley Flow through an Inclined Stenosed Arter
Description:
Motivated by the concept of blood flow in a stenosed artery, this present research investigates the influence of stenosis shape in terms of height and arterial inclination on the blood flow and solute dispersion behaviour through an inclined stenosed artery.
The blood rheology is depicted using the Herschel-Bulkley model in a laminar, axisymmetric and incompressible unsteady flow through the stenosed artery.
The effect of stenosis is focused on the stenosis height for both sine and cosine stenosis.
Parameters of arterial inclination are also investigated to observe the effect of inclination on the blood velocity and dispersion function.
Perturbation method is adopted in solving for the blood flow velocity under the effect of stenosis height and arterial inclination.
The dispersion function of solute dispersion is solved using the obtained blood velocity by adopting the Generalized Dispersion Model (GDM) in obtaining steady dispersion functions.
This present study shows that the increase in stenosis height decreases both blood velocity and dispersion function.
Meanwhile, the increase in arterial inclination increases the blood velocity and dispersion function.
The effect of stenosis height also affects blood velocity and dispersion function for the sine stenosis more than the cosine stenosis.
Related Results
Mathematical Analysis of Unsteady Solute Dispersion with Chemical Reaction Through a Stenosed Artery
Mathematical Analysis of Unsteady Solute Dispersion with Chemical Reaction Through a Stenosed Artery
One major kind of arterial disease in blood flow that attracted many researchers is arterial stenosis. Arterial stenosis occurs when a lumen of artery is narrowed by the accumulati...
Effect of Catheter and Stenosis on Solute Diffusion in Non-Newtonian Blood Flow through a Catheterized Stenosed Artery
Effect of Catheter and Stenosis on Solute Diffusion in Non-Newtonian Blood Flow through a Catheterized Stenosed Artery
The presence of stenosis at the wall of the artery lead to further cardiovascular diseases such as heart attack, stroke and many more. Treatment of a stenosed artery includes the i...
Solution Chemistry
Solution Chemistry
A solution is a homogeneous mixture of two or more substances. It is usually made up of a solute and a solvent. Generally, Solute+Solvent = Solution A solute is any substance that ...
Women of science in the circle of Sir John Frederick William Herschel
Women of science in the circle of Sir John Frederick William Herschel
Godmothers to live up to: John Herschel's choices for his daughters
John Herschel had a wide circle of erudite female friends, something his wife Margaret found in...
Retrospective Evaluation of Patients Diagnosed with Vertebral Artery Dissection
Retrospective Evaluation of Patients Diagnosed with Vertebral Artery Dissection
Kraniyoservikal arter diseksiyonları nadir görülen ancak genç inme hastalarda önemli bir etiyolojik faktördür. Etiyopatogenezde genetik ve çevresel faktörler sorumlu tutulmaktadır....
Flow Characterization Of Miscible Displacement Processes
Flow Characterization Of Miscible Displacement Processes
Abstract
One of the main goals of enhanced oil recovery (EOR) is to achieve maximum oil recovery. The occurrences Of dispersion of miscible displacement cause not...
Temporal behavior of a solute cloud in a heterogeneous porous medium: 1. Point‐like injection
Temporal behavior of a solute cloud in a heterogeneous porous medium: 1. Point‐like injection
We investigate the temporal behavior of transport coefficients in a model for transport of a solute through a spatially heterogeneous saturated aquifer. In the framework of a stoch...
Dispersion Compensation in Optical Fiber: A Review
Dispersion Compensation in Optical Fiber: A Review
A cylindrical-shaped dielectric waveguide is what an optical fiber is. The core-cladding interface confines light, as electromagnetic (EM) energy, within its surface and guides lig...

