A finite element method for modeling surface growth and resorption of deformable solids
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Publication:2667289
DOI10.1007/s00466-021-02044-yzbMath1478.74079OpenAlexW3180060319WikidataQ113326675 ScholiaQ113326675MaRDI QIDQ2667289
Guy L. Bergel, Panayiotis Papadopoulos
Publication date: 24 November 2021
Published in: Computational Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00466-021-02044-y
kinematicsbalance lawarbitrary Lagrangian-Eulerian finite element methodfront-tracking algorithmsurface growthsurface resorption
Finite element methods applied to problems in solid mechanics (74S05) Kinematics of deformation (74A05)
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Cites Work
- Continuum modeling and numerical simulation of cell motility
- On the equations of motion for rigid bodies with surface growth
- Mechanical modeling of growth considering domain variation. II: Volumetric and surface growth involving Eshelby tensors
- On surface growth of actin networks
- A mathematical theory of the mechanical behavior of continuous media
- Solving partial differential equations on irregular domains with moving interfaces, with applications to superconformal electrodeposition in semiconductor manufacturing
- On the accretion of inhomogeneous viscoelastic bodies under finite deformations
- Kinematics of surface growth
- A level set approach to a unified model for etching, deposition, and lithography. III: Redeposition, reemission, surface diffusion, and complex simulations
- Continuous accretion of a composite cylinder
- A contribution to the mechanics and thermodynamics of surface growth. Application to bone external remodeling
- Nonlinear mechanics of surface growth for cylindrical and spherical elastic bodies
- Nonlinear mechanics of accretion
- A continuum theory of surface growth
- Finite element formulations for large deformation dynamic analysis
- The segment projection method for interface tracking
- Gravitational stresses in accreted bodies
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