A time dependent numerical solution of the linearized continuity and momentum equation was developed for sound propagation in a two dimensional straight hard or soft wall duct with a sheared mean flow. The time dependent governing acoustic difference equations and boundary conditions were developed along with a numerical determination of the maximum stable time increments. A harmonic noise source radiating into a quiescent duct was analyzed. This explicit iteration method then calculated stepwise in real time to obtain the transient as well as the steady state solution of the acoustic field. Example calculations were presented for sound propagation in hard and soft wall ducts, with no flow and plug flow. Although the problem with sheared fl...
Finite difference equations are derived for sound propagation in a two dimensional, straight, soft w...
A finite difference formulation is presented for wave propagation in a rectangular two-dimensional d...
A finite difference formulation is presented for sound propagation in a rectangular two-dimensional ...
A time dependent numerical formulation was derived for sound propagation in a two dimensional straig...
The time-dependent governing acoustic-difference equations and boundary conditions are developed and...
A finite difference formulation is presented for sound propagation in a two-dimensional straight sof...
Both finite difference and finite element analyses of small amplitude (linear) sound propagation in ...
An explicit finite difference iteration scheme is developed to study harmonic sound propagation in d...
A finite difference formulation is presented for sound propagation in a rectangular two-dimensional ...
An explicit time/space finite difference procedure is used to model the propagation of sound in a qu...
A transient finite difference wave envelope formulation is presented for sound propagation, without ...
Sound propagation without flow in a rectangular duct with a converging-diverging area variation was ...
A finite difference formulation is presented which is useful in the study of acoustically treated in...
An explicit finite difference real time iteration scheme is developed to study harmonic sound propag...
A numerical method was developed that could predict the pressure distribution of a ducted source fro...
Finite difference equations are derived for sound propagation in a two dimensional, straight, soft w...
A finite difference formulation is presented for wave propagation in a rectangular two-dimensional d...
A finite difference formulation is presented for sound propagation in a rectangular two-dimensional ...
A time dependent numerical formulation was derived for sound propagation in a two dimensional straig...
The time-dependent governing acoustic-difference equations and boundary conditions are developed and...
A finite difference formulation is presented for sound propagation in a two-dimensional straight sof...
Both finite difference and finite element analyses of small amplitude (linear) sound propagation in ...
An explicit finite difference iteration scheme is developed to study harmonic sound propagation in d...
A finite difference formulation is presented for sound propagation in a rectangular two-dimensional ...
An explicit time/space finite difference procedure is used to model the propagation of sound in a qu...
A transient finite difference wave envelope formulation is presented for sound propagation, without ...
Sound propagation without flow in a rectangular duct with a converging-diverging area variation was ...
A finite difference formulation is presented which is useful in the study of acoustically treated in...
An explicit finite difference real time iteration scheme is developed to study harmonic sound propag...
A numerical method was developed that could predict the pressure distribution of a ducted source fro...
Finite difference equations are derived for sound propagation in a two dimensional, straight, soft w...
A finite difference formulation is presented for wave propagation in a rectangular two-dimensional d...
A finite difference formulation is presented for sound propagation in a rectangular two-dimensional ...