Finite element discretization of a biological network formation system: a preliminary study

03/19/2023
by   Clarissa Astuto, et al.
0

A finite element discretization is developed for the Cai-Hu model, describing the formation of biological networks. The model consists of a non linear elliptic equation for the pressure p and a non linear reaction-diffusion equation for the conductivity tensor ℂ. The problem requires high resolution due to the presence of multiple scales, the stiffness in all its components and the non linearities. We propose a low order finite element discretization in space coupled with a semi-implicit time advancing scheme. The code is validated with several numerical tests performed with various choices for the parameters involved in the system. In absence of the exact solution, we apply Richardson extrapolation technique to estimate the order of the method.

READ FULL TEXT

page 7

page 8

page 9

research
06/03/2020

Mixed Finite Element Method and numerical analysis of a convection-diffusion-reaction model in a porous medium

A hydrogeological model for the spread of pollution in an aquifer is con...
research
01/30/2023

Asymmetry and condition number of an elliptic-parabolic system for biological network formation

We present results of numerical simulations of the tensor-valued ellipti...
research
07/24/2023

Adaptive Parameter Optimization For An Elliptic-Parabolic System Using The Reduced-Basis Method With Hierarchical A-Posteriori Error Analysis

In this paper the authors study a non-linear elliptic-parabolic system, ...
research
09/17/2022

Comparison of two aspects of a PDE model for biological network formation

We compare the solutions of two systems of partial differential equation...
research
01/23/2021

A Finite-Element Model for the Hasegawa-Mima Wave Equation

In a recent work, two of the authors have formulated the non-linear spac...
research
08/17/2020

Superconvergence of time invariants for the Gross-Pitaevskii equation

This paper considers the numerical treatment of the time-dependent Gross...

Please sign up or login with your details

Forgot password? Click here to reset