In Part I of the present paper a parameter analysis showed that the most efficient model to describe viscothermal wave propagation is the low reduced frequency model. In order to demonstrate the wide range of applicability of the low reduced frequency model, a number of examples from the literature are discussed in Part II. An overview of fundamental solutions and general applications is given. Because the models are all written in terms of dimensionless parameters and solutions for various co-ordinate systems are given, this paper also serves as a solution overview
In this paper we consider the propagation of linear transverse acoustic waves in isotropic media in ...
In this paper we consider the propagation of linear transverse acoustic waves in isotropic media in ...
In this paper we consider the propagation of linear transverse acoustic waves in isotropic media in ...
This research deals with pressure waves in a gas trapped in thin layers or narrow tubes. In these ca...
In this work, the accuracy, efficiency and range of applicability of various (approximate) models fo...
This research deals with pressure waves in a gas trapped in thin layers or narrow tubes. In these ca...
This paper deals with viscothermal wave propagation, including acousto-elastic interaction, For wave...
For wave propagation in thin gas or fluid layers, the effects of viscosity and thermal conductivity ...
The well known wave equation describes isentropic wave propagation. In this equation, non-isentropic...
The well known wave equation describes isentropic wave propagation. In this equation, non-isentropic...
International audienceAcoustic wave propagation in viscothermal fluids, an electromagnetic analogy, ...
This chapter serves as an introduction to seismic wave propagation for those waves commonly observed...
The influence of viscoelastic properties in sound propagation is analyzed. A generalization of Oldro...
The so called low reduced frequency model has been shown to be both an accurate and a relatively sim...
This paper presents a mathematical model of linear acoustic wave propagation in fluids. The benefits...
In this paper we consider the propagation of linear transverse acoustic waves in isotropic media in ...
In this paper we consider the propagation of linear transverse acoustic waves in isotropic media in ...
In this paper we consider the propagation of linear transverse acoustic waves in isotropic media in ...
This research deals with pressure waves in a gas trapped in thin layers or narrow tubes. In these ca...
In this work, the accuracy, efficiency and range of applicability of various (approximate) models fo...
This research deals with pressure waves in a gas trapped in thin layers or narrow tubes. In these ca...
This paper deals with viscothermal wave propagation, including acousto-elastic interaction, For wave...
For wave propagation in thin gas or fluid layers, the effects of viscosity and thermal conductivity ...
The well known wave equation describes isentropic wave propagation. In this equation, non-isentropic...
The well known wave equation describes isentropic wave propagation. In this equation, non-isentropic...
International audienceAcoustic wave propagation in viscothermal fluids, an electromagnetic analogy, ...
This chapter serves as an introduction to seismic wave propagation for those waves commonly observed...
The influence of viscoelastic properties in sound propagation is analyzed. A generalization of Oldro...
The so called low reduced frequency model has been shown to be both an accurate and a relatively sim...
This paper presents a mathematical model of linear acoustic wave propagation in fluids. The benefits...
In this paper we consider the propagation of linear transverse acoustic waves in isotropic media in ...
In this paper we consider the propagation of linear transverse acoustic waves in isotropic media in ...
In this paper we consider the propagation of linear transverse acoustic waves in isotropic media in ...