An approximate decomposition of fluid-flow variables satisfying unbounded compressible Navier–Stokes equations into acoustically radiating and non-radiating components leads to well-defined source terms that can be identified as the physical sources of aerodynamic noise. We show that, by filtering the flow field by means of a linear convolution filter, it is possible to decompose the flow into non-radiating and radiating components. This is demonstrated on two different flows: one satisfying the linearised Euler equations and the other the Navier–Stokes equations. In the latter case, the corresponding sound sources are computed. They are found to be more physical than those computed through classical acoustic analogies in which the flow fie...
Hybrid computational aeroacoustics applications approaches, in which the computational domain is spl...
Computational approaches are being developed to study a range of problems in aeroacoustics. These ae...
An algorithm to compute the silent base flow sources of sound in a jet is introduced. The algorithm ...
The physical sources of sound are expressed in terms of the non-radiating part of the flow. The non-...
The ability to separate acoustically radiating and non-radiating components in fluid flow is desirab...
AbstractThe physical sources of sound are expressed in terms of the non-radiating part of the flow. ...
AbstractThe physical sources of sound are expressed in terms of the non-radiating part of the flow. ...
The physical sources of sound are expressed in terms of the non-radiating part of the flow. The non-...
AbstractAn aerodynamic sound source extraction from a general flow field is applied to a number of m...
An aerodynamic sound source extraction from a general flow field is applied to a number of model pro...
We derive a closed system of equations that relates the acoustically radiating flow variables to the...
The nonlinear aerodynamic sound generation by turbulence has been long analyzed since the foundation...
Aerodynamic noise generated by low Mach number flow through a pipe with two differently sized diaphr...
An analysis was conducted to determine the properties of sound generated by aerodynamic forces or mo...
Title: Techniques to identify physical sources of aerodynamically generated sound Presenter: Vishal ...
Hybrid computational aeroacoustics applications approaches, in which the computational domain is spl...
Computational approaches are being developed to study a range of problems in aeroacoustics. These ae...
An algorithm to compute the silent base flow sources of sound in a jet is introduced. The algorithm ...
The physical sources of sound are expressed in terms of the non-radiating part of the flow. The non-...
The ability to separate acoustically radiating and non-radiating components in fluid flow is desirab...
AbstractThe physical sources of sound are expressed in terms of the non-radiating part of the flow. ...
AbstractThe physical sources of sound are expressed in terms of the non-radiating part of the flow. ...
The physical sources of sound are expressed in terms of the non-radiating part of the flow. The non-...
AbstractAn aerodynamic sound source extraction from a general flow field is applied to a number of m...
An aerodynamic sound source extraction from a general flow field is applied to a number of model pro...
We derive a closed system of equations that relates the acoustically radiating flow variables to the...
The nonlinear aerodynamic sound generation by turbulence has been long analyzed since the foundation...
Aerodynamic noise generated by low Mach number flow through a pipe with two differently sized diaphr...
An analysis was conducted to determine the properties of sound generated by aerodynamic forces or mo...
Title: Techniques to identify physical sources of aerodynamically generated sound Presenter: Vishal ...
Hybrid computational aeroacoustics applications approaches, in which the computational domain is spl...
Computational approaches are being developed to study a range of problems in aeroacoustics. These ae...
An algorithm to compute the silent base flow sources of sound in a jet is introduced. The algorithm ...