A thermodynamical suspension model for blood

Fuente: arXiv
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Autori principali: Gorgone, M., Munafo', C. F., Palumbo, A., Rogolino, P.
Natura: Preprint
Pubblicazione: 2025
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author Gorgone, M.
Munafo', C. F.
Palumbo, A.
Rogolino, P.
author_facet Gorgone, M.
Munafo', C. F.
Palumbo, A.
Rogolino, P.
contents A complete thermodynamical analysis for a blood model, based on mixture theory, is performed. The model is developed considering the blood as a suspension of red blood cells (solid component) in the plasma (fluid component), and taking into account the temperature effects. Furthermore, two independent scalar internal variables are introduced accounting for additional dissipative effects. Using Clausius-Duhem inequality, the general thermodynamic restrictions and residual dissipation inequality are derived. The thermodynamic admissibility with the second law of thermodynamics is assessed by means of the extended Coleman-Noll procedure; in one space dimension we exhibit a solution of all the thermodynamical constraints.
format Preprint
id arxiv_https___arxiv_org_abs_2506_00067
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A thermodynamical suspension model for blood
Gorgone, M.
Munafo', C. F.
Palumbo, A.
Rogolino, P.
Fluid Dynamics
Mathematical Physics
Biological Physics
A complete thermodynamical analysis for a blood model, based on mixture theory, is performed. The model is developed considering the blood as a suspension of red blood cells (solid component) in the plasma (fluid component), and taking into account the temperature effects. Furthermore, two independent scalar internal variables are introduced accounting for additional dissipative effects. Using Clausius-Duhem inequality, the general thermodynamic restrictions and residual dissipation inequality are derived. The thermodynamic admissibility with the second law of thermodynamics is assessed by means of the extended Coleman-Noll procedure; in one space dimension we exhibit a solution of all the thermodynamical constraints.
title A thermodynamical suspension model for blood
topic Fluid Dynamics
Mathematical Physics
Biological Physics
url https://arxiv.org/abs/2506.00067