Abstract:
:This article describes the interaction between solid particles and blood propagating through a capillary. A slip condition is considered on the walls of the capillary. The rheological features of the blood are discussed by considering as a two-phase Newtonian fluid model, i.e., the suspension of cells in plasma. A perturbation method is successfully applied to obtain the series solution of the governing coupled differential equations. The series solution for both fluid and particle phase are presented up to second order approximation. The expressions for the velocity and pressure distributions under slip effects are determined within a tube. Furthermore, the current results are beneficial to understand the rheological features of blood which will be helpful to interpret and analyze more complex blood flow models.
journal_name
Microvasc Resjournal_title
Microvascular researchauthors
Zeeshan A,Fatima A,Khalid F,Bhatti MMdoi
10.1016/j.mvr.2018.04.004subject
Has Abstractpub_date
2018-09-01 00:00:00pages
38-46eissn
0026-2862issn
1095-9319pii
S0026-2862(18)30042-6journal_volume
119pub_type
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