We present a Lagrangian phase-field method to study the low Reynolds number dynamics of vesicles embedded in a viscous fluid. In contrast to previous approaches, where the field variables are the phase-field and the fluid velocity, here we exploit the fact that the phasefield tracks a material interface to reformulate the problem in terms of the Lagrangian motion of a background medium, containing both the biomembrane and the fluid. We discretize the equations in space with maximum-entropy approximants, carefully shown to perform well in phase-field models of biomembranes in a companion paper. The proposed formulation is variational, lending itself to implicit time-stepping algorithms based on minimization of a time-incremental energy, ...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...
In this paper we derive thermodynamically consistent higher order phase �eld models for the dynamics...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...
We present a Lagrangian phase-field method to study the low Reynolds number dynamics of vesicles emb...
We present an adaptive meshfree method to approximate phase-field models of biomembranes. In such mo...
Las biomembranas constituyen la estructura de separación fundamental en las celulas animales, y son ...
Ryham, X. Wang and J. Zhang) on the phase field modeling and simulations of the vesicle membrane def...
Vesicles formed by lipid bilayers (biomembranes) show a variety of interesting shapes that can be ex...
International audienceThe numerical simulation of the deformation of vesicle membranes under simple ...
We develop and investigate numerically a thermodynamically consistent model of two-dimensional multi...
The goal of this project is to explore the mechanics of lipid fluid membranes as found in biological...
Biomembranes consisting of multiple lipids may involve phase separation phenomena leading to coexist...
Modeling vesicle dynamics involves a complicated moving boundary problem where uids, thermal uctuati...
A phase-field model that takes into account the bending energy of fluid vesicles is presented. The C...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...
In this paper we derive thermodynamically consistent higher order phase �eld models for the dynamics...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...
We present a Lagrangian phase-field method to study the low Reynolds number dynamics of vesicles emb...
We present an adaptive meshfree method to approximate phase-field models of biomembranes. In such mo...
Las biomembranas constituyen la estructura de separación fundamental en las celulas animales, y son ...
Ryham, X. Wang and J. Zhang) on the phase field modeling and simulations of the vesicle membrane def...
Vesicles formed by lipid bilayers (biomembranes) show a variety of interesting shapes that can be ex...
International audienceThe numerical simulation of the deformation of vesicle membranes under simple ...
We develop and investigate numerically a thermodynamically consistent model of two-dimensional multi...
The goal of this project is to explore the mechanics of lipid fluid membranes as found in biological...
Biomembranes consisting of multiple lipids may involve phase separation phenomena leading to coexist...
Modeling vesicle dynamics involves a complicated moving boundary problem where uids, thermal uctuati...
A phase-field model that takes into account the bending energy of fluid vesicles is presented. The C...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...
In this paper we derive thermodynamically consistent higher order phase �eld models for the dynamics...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...