Numerical model validation of the blood flow through a microchannel hyperbolic contraction
Barbosa, Filipe and Dueñas-Pamplona, Jorge and Abreu, Cristiano S. and Oliveira, Mónica S. N. and Lima, Rui A. (2023) Numerical model validation of the blood flow through a microchannel hyperbolic contraction. Micromachines, 14 (10). 1886. ISSN 2072-666X (https://doi.org/10.3390/mi14101886)
Preview |
Text.
Filename: Barbosa_etal_Micromachines_2023_Numerical_model_validation_of_the_blood_flow_through_a_microchannel_hyperbolic_contraction.pdf
Final Published Version License: Download (4MB)| Preview |
Abstract
A computational fluid dynamics (CFD) model of blood flow through hyperbolic contraction with a discrete phase model (DPM) was experimentally validated. For this purpose, the positions and velocities of red blood cells (RBCs) flowing in a microchannel with hyperbolic contraction were experimentally assessed using image analysis techniques, and were subsequently compared with the numerical results. The numerically and experimentally obtained velocity fields were in good agreement, with errors smaller than 10%. Additionally, a nearly constant strain rate was observed in the contraction region, which can be attributed to the quasilinear increase in the velocity along the hyperbolic contraction. Therefore, the numerical technique used was validated due to the close similarity between the numerically and experimentally obtained results. The tested CFD model can be used to optimize the microchannel design by minimizing the need to fabricate prototypes and evaluate them experimentally.
ORCID iDs
Barbosa, Filipe, Dueñas-Pamplona, Jorge, Abreu, Cristiano S., Oliveira, Mónica S. N. ORCID: https://orcid.org/0000-0002-1836-4692 and Lima, Rui A.;-
-
Item type: Article ID code: 86988 Dates: DateEvent30 September 2023Published28 September 2023Accepted12 August 2023SubmittedSubjects: Medicine > Biomedical engineering. Electronics. Instrumentation Department: Faculty of Engineering > Mechanical and Aerospace Engineering Depositing user: Pure Administrator Date deposited: 18 Oct 2023 11:29 Last modified: 11 Nov 2024 14:07 URI: https://strathprints.strath.ac.uk/id/eprint/86988