Effective equations governing an active poroelastic medium

Author:

Collis J.ORCID,Brown D. L.ORCID,Hubbard M. E.ORCID,O’Dea R. D.ORCID

Abstract

In this work, we consider the spatial homogenization of a coupled transport and fluid–structure interaction model, to the end of deriving a system of effective equations describing the flow, elastic deformation and transport in an active poroelastic medium. The ‘active’ nature of the material results from a morphoelastic response to a chemical stimulant, in which the growth time scale is strongly separated from other elastic time scales. The resulting effective model is broadly relevant to the study of biological tissue growth, geophysical flows (e.g. swelling in coals and clays) and a wide range of industrial applications (e.g. absorbant hygiene products). The key contribution of this work is the derivation of a system of homogenized partial differential equations describing macroscale growth, coupled to transport of solute, that explicitly incorporates details of the structure and dynamics of the microscopic system, and, moreover, admits finite growth and deformation at the pore scale. The resulting macroscale model comprises a Biot-type system, augmented with additional terms pertaining to growth, coupled to an advection–reaction–diffusion equation. The resultant system of effective equations is then compared with other recent models under a selection of appropriate simplifying asymptotic limits.

Funder

Engineering and Physical Sciences Research Council

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference87 articles.

1. On the infusion of a therapeutic agent into a solid tumour modeled as a poroelastic medium;Bottaro A;J. Biomed. Eng.,2012

2. Mathematical Models of Avascular Tumor Growth

3. Bone poroelasticity

4. ON THE INTERFACE LAW BETWEEN A DEFORMABLE POROUS MEDIUM CONTAINING A VISCOUS FLUID AND AN ELASTIC BODY

5. Wang HF. 2000 Theory of linear poroelasticity with applications to geomechanics and hydrogeology . Princeton Series in Geophysics. Princeton NJ: Princeton University Press.

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