A matrix-form GSM-CFD solver for incompressible fluids and its application to hemodynamics
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Publication:487798
DOI10.1007/s00466-014-0990-8zbMath1311.76160OpenAlexW1980238581MaRDI QIDQ487798
Publication date: 23 January 2015
Published in: Computational Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00466-014-0990-8
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Uses Software
Cites Work
- Unnamed Item
- A fully implicit domain decomposition based ALE framework for three-dimensional fluid-structure interaction with application in blood flow computation
- Patient-specific computational analysis of the influence of a stent on the unsteady flow in cerebral aneurysms
- A novel linearly-weighted gradient smoothing method (LWGSM) in the simulation of fluid dynamics problem
- FEM multigrid techniques for fluid-structure interaction with application to hemodynamics
- Numerical modeling and simulation of pulsatile blood flow in rigid vessel using gradient smoothing method
- Fluid-structure interaction modeling of a patient-specific cerebral aneurysm: influence of structural modeling
- Smoothed particle hydrodynamics (SPH): an overview and recent developments
- Multiscale sequentially-coupled arterial FSI technique
- Wall shear stress calculations in space-time finite element computation of arterial fluid-structure interactions
- A 3D non-Newtonian fluid-structure interaction model for blood flow in arteries
- A smoothed finite element method for mechanics problems
- A gradient smoothing method (GSM) with directional correction for solid mechanics problems
- Sequentially-coupled arterial fluid-structure interaction (SCAFSI) technique
- Immersed smoothed finite element method for fluid-structure interaction simulation of aortic valves
- A numerical method for solving incompressible viscous flow problems
- Lattice-Boltzmann Method for Complex Flows
- Patient-specific arterial fluid-structure interaction modeling of cerebral aneurysms
- A GENERALIZED GRADIENT SMOOTHING TECHNIQUE AND THE SMOOTHED BILINEAR FORM FOR GALERKIN FORMULATION OF A WIDE CLASS OF COMPUTATIONAL METHODS
- An adaptive gradient smoothing method (GSM) for fluid dynamics problems
- Space-time finite element computation of arterial fluid-structure interactions with patient-specific data
- Arterial fluid mechanics modeling with the stabilized space–time fluid–structure interaction technique
- A gradient smoothing method (GSM) for fluid dynamics problems
- Theoretical aspects of the smoothed finite element method (SFEM)
- Smoothed Particle Hydrodynamics
- LATTICE BOLTZMANN METHOD FOR FLUID FLOWS
- A MOVING-MESH GRADIENT SMOOTHING METHOD FOR COMPRESSIBLE CFD PROBLEMS
- Modelling of fluid–structure interactions with the space–time finite elements: Solution techniques
- Modelling of fluid–structure interactions with the space–time finite elements: Arterial fluid mechanics
- Meshfree Methods
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