Title of article :
The immersed boundary method for advection–electrodiffusion with implicit timestepping and local mesh refinement
Author/Authors :
Lee، نويسنده , , Pilhwa and Griffith، نويسنده , , Boyce E. and Peskin، نويسنده , , Charles S.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Abstract :
We describe an immersed boundary method for problems of fluid–solute-structure interaction. The numerical scheme employs linearly implicit timestepping, allowing for the stable use of timesteps that are substantially larger than those permitted by an explicit method, and local mesh refinement, making it feasible to resolve the steep gradients associated with the space charge layers as well as the chemical potential, which is used in our formulation to control the permeability of the membrane to the (possibly charged) solute. Low Reynolds number fluid dynamics are described by the time-dependent incompressible Stokes equations, which are solved by a cell-centered approximate projection method. The dynamics of the chemical species are governed by the advection–electrodiffusion equations, and our semi-implicit treatment of these equations results in a linear system which we solve by GMRES preconditioned via a fast adaptive composite-grid (FAC) solver. Numerical examples demonstrate the capabilities of this methodology, as well as its convergence properties.
Keywords :
immersed boundary method , Implicit , Advection–electrodiffusion , local mesh refinement , Fast adaptive composite , FAC
Journal title :
Journal of Computational Physics
Journal title :
Journal of Computational Physics