Pages that link to "Item:Q2422901"
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The following pages link to Finite element approximation of flow induced vibrations of human vocal folds model: effects of inflow boundary conditions and the length of subglottal and supraglottal channel on phonation onset (Q2422901):
Displaying 9 items.
- Evaluation of analytical modeling functions for the phonation onset process (Q332933) (← links)
- Numerical approximation of flow induced vibrations of channel walls (Q536794) (← links)
- Fluid flow and frequency-dependent friction in the human vocal system (Q904979) (← links)
- Investigation of prescribed movement in fluid-structure interaction simulation for the human phonation process (Q2016163) (← links)
- FE numerical simulation of incompressible airflow in the glottal channel periodically closed by self-sustained vocal folds vibration (Q2020583) (← links)
- On numerical simulation of flexibly supported airfoil in interaction with incompressible fluid flow using laminar-turbulence transition model (Q2226792) (← links)
- On suitable inlet boundary conditions for fluid-structure interaction problems in a channel. (Q2315460) (← links)
- On finite element approximation of flow induced vibration of elastic structure (Q4562685) (← links)
- Numerical Approximation of Fluid-Structure Interaction Problem in a Closing Channel Near the Stability Boundary (Q5152912) (← links)