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A mathematical model for wave propagation in elastic tubes with inhomogeneities: Application to blood waves propagation
Authors:R.A. Kraenkel  P. Woafo
Affiliation:a Instituto de Física Teórica-UNESP, R. Pamplona 145, 01405-900 São Paulo, Brazil
b Institut Universitaire de Technologie Fotso Victor de Bandjoun, Université de Dschang, B.P. 134, Bandjoun, Cameroon
c Laboratory of Modelling and Simulation in Engineering and Biological Physics, University of Yaoundé I, Box 812, Yaoundé, Cameroon
Abstract:We study the propagation of waves in an elastic tube filled with an inviscid fluid. We consider the case of inhomogeneity whose mechanical and geometrical properties vary in space. We deduce a system of equations of the Boussinesq type as describing the wave propagation in the tube. Numerical simulations of these equations show that inhomogeneities prevent separation of right-going from left-going waves.Then reflected and transmitted coefficients are obtained in the case of localized constriction and localized rigidity. Next we focus on wavetrains incident on various types of anomalous regions. We show that the existence of anomalous regions modifies the wavetrain patterns.
Keywords:Elastic tubes   Nonlinear waves propagation   Arterial blood flow   Reflection phenomenon
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