This project includes all of the FEBio models described in the paper where the FEBio fluid solver was presented.
Owner: ateshian
Gerard A. Ateshian, Jay J. Shim, Steve A. Maas, & Jeffrey A. Weiss (2018). Finite Element Framework for Computational Fluid Dynamics in FEBio. Journal of Biomechanical Engineering, 140(2). DOI: 10.1115/1.4038716
fluid
Files
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Description
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Lid Driven Cavity Flow/LidDrivenCavityFlow128x128UTMRe5000.fsm
Lid driven cavity flow, Re=5000, 128 x 128 biased tet4 mesh
fluid
Lid Driven Cavity Flow/LidDrivenCavityFlow128x128BHMRe400.fsm
Lid driven cavity flow, Re=400, 128 x 128 biased hex8 mesh
fluid
Lid Driven Cavity Flow/LidDrivenCavityFlow128x128BHMRe5000.fsm
Lid driven cavity flow, Re=5000, 128 x 128 biased hex8 mesh
fluid
Lid Driven Cavity Flow/LidDrivenCavityFlow128x128UTMRe400.fsm
Lid driven cavity flow, Re=400, 128 x 128 biased tet4 mesh
fluid
Lid Driven Cavity Flow/LidDrivenCavityFlow32x32BH20MRe400.fsm
Lid driven cavity flow, Re=400, 32 x 32 biased hex20 mesh
fluid
Lid Driven Cavity Flow/LidDrivenCavityFlow32x32BH20MRe5000.fsm
Lid driven cavity flow, Re=5000, 32 x 32 biased hex20 mesh
fluid
Lid Driven Cavity Flow/LidDrivenCavityFlow32x32UPMRe400.fsm
Lid driven cavity flow, Re=400, 32 x 32 biased penta15-hex20 mesh
fluid
Lid Driven Cavity Flow/LidDrivenCavityFlow32x32UPMRe5000.fsm
Lid driven cavity flow, Re=5000, 32 x 32 biased penta15-hex20 mesh
fluid
Flow Past Cylinder/RE100DisturbBLR075.fsm
Flow past cylinder, Re=100, spectral radius rhoi = 0.75. To test other spectral radii reported in the paper, set rhoi to 0, 0.25 and 0.5.
fluid
Aorta/AortaV3.fsm
This is the aorta analysis presented in the Supplementary Materials.
This is the bifurcated carotid artery problem, with the finest mesh.
fluid
Bifurcated Carotid Artery/BifArtTetBLMedpara.fsm
This is the bifurcated carotid artery problem, with a medium mesh.
fluid
Backward Facing Step/BackStepTet.feb.zip
This is the backward-facing step problem (steady-state analysis).
fluid
Flow Past Block Narrow Channel/FlowPastBlockNarrowChannelRho_0.fsm
This is the model file for flow past a block in a narrow channel. This model uses a spectral radius rhoi=0. Set this value to 0.5 or 1.0 to replicate other results in the paper.
This is the model file for 1D wave propagation with iniviscid flow. This model uses a spectral radius rhoi of 0. Modify this value to -1 (for Euler integration), 0.50, or 1.0 to simulate the other cases described in the paper.
fluid
Idealized Model of Arterial Stenosis/SeeleyV2AxisRE500.fsm
This is the idealized model of arterial stenosis that reproduces the experiment of Seeley et al. (1976). This model is set up to produce a Reynolds number Re=500. Other values can be obtained by changing the viscosity of the fluid.