English

Towards a universal law for blood flow

Fluid Dynamics 2024-08-27 v1

Abstract

Despite decades of research on blood flow, an analogue of Navier-Stokes equations that accurately describe blood flow properties has not been established yet. The reason behind this is that the properties of blood flow seem \`a priori non universal as they depend on various factors such as global concentration of red blood cells (RBCs) and channel width. Here, we have discovered a universal law when the stress and strain rate are measured at a given local RBCs concentration. However, the local concentration must be determined in order to close the problem. We propose a non-local diffusion equation of RBCs concentration that agrees with the full simulation. The universal law is exemplified for both shear and pressure driven flows. While the theory is restricted to a simplistic geometry (straight channel) it provides a fundamental basis for future research on blood flow dynamics and could lead to the development of a new theory that accurately describes blood flow properties under various conditions, such as in complex vascular networks.

Keywords

Cite

@article{arxiv.2408.13824,
  title  = {Towards a universal law for blood flow},
  author = {Alexander Farutin and Abdessamad Nait-Ouhra and Gopal Dixit and Mehdi Abbasi and Othmane Aouane and Jens Harting and Chaouqi Misbah},
  journal= {arXiv preprint arXiv:2408.13824},
  year   = {2024}
}
R2 v1 2026-06-28T18:23:16.189Z