Title of article :
Numerical and experimental study of expiratory flow in the case of major upper airway obstructions with fluid–structure interaction
Author/Authors :
Chouly، نويسنده , , F. and Van Hirtum، نويسنده , , A. and Lagrée، نويسنده , , P.-Y. and Pelorson، نويسنده , , X. and Payan، نويسنده , , Y.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
20
From page :
250
To page :
269
Abstract :
This study deals with the numerical prediction and experimental description of the flow-induced deformation in a rapidly convergent–divergent geometry which stands for a simplified tongue, in interaction with an expiratory airflow. An original in vitro experimental model is proposed, which allows measurement of the deformation of the artificial tongue, in condition of major initial airway obstruction. The experimental model accounts for asymmetries in geometry and tissue properties which are two major physiological upper airway characteristics. The numerical method for prediction of the fluid–structure interaction is described. The theory of linear elasticity in small deformations has been chosen to compute the mechanical behaviour of the tongue. The main features of the flow are taken into account using a boundary layer theory. The overall numerical method entails finite element solving of the solid problem and finite differences solving of the fluid problem. First, the numerical method predicts the deformation of the tongue with an overall error of the order of 20%, which can be seen as a preliminary successful validation of the theory and simulations. Moreover, expiratory flow limitation is predicted in this configuration. As a result, both the physical and numerical models could be useful to understand this phenomenon reported in heavy snorers and apneic patients during sleep.
Keywords :
Upper airway , Finite element modelling , Boundary layer theory , Numerical simulation , In vitro experiment , Expiratory flow limitation , Obstructive Sleep Apnea , SNORING , Fluid–structure interaction
Journal title :
Journal of Fluids and Structures
Serial Year :
2008
Journal title :
Journal of Fluids and Structures
Record number :
2213157
Link To Document :
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