In the context of sound transmission through aircraft fuselage panels,equations for the field-incidence transmission loss (TL) of a single-walled panel are derived that include the effects of external air flow, panel curvature, and internal fuselage pressurization. These effects are incorporated into the classical equations for the TL of single panels, and the resulting double integral for field-incidence TL is numerically evaluated for a specific set of parameters. Flow is shown to provide a modest increase in TL that is uniform with frequency up to the critical frequency. The increase is about 2 dB at Mach numberM = 0.5, and about 3.5 dB at M = l. Above the critical frequency where TL is damping controlled, the increase can be slightly la...
In the context of the transmission of airborne noise into an aircaft fuselage, a mathematical model ...
An important dip in the sound transmission loss of curved panels occurs at the ring frequency. The r...
In an effort to improve understanding of the phenomenon of noise transmission through the sidewalls ...
Models of both flat and curved fuselage panels were tested for their sound transmission characterist...
In the context of the transmission of airborne noise into an aircraft fuselage, a mathematical model...
A light aircraft fuselage was modeled as a half-scale cylindrical shell to study the sound transmiss...
Sound transmission through an infinite cylindrical sandwich shell is studied in the context of the t...
Sound transmission through an infinite cylindrical sandwich shell is studied in the context of the t...
Analytical and semi-empirical methods for determining the transmission of sound through isolated pan...
In the context of the transmission of airborne noise into an aircraft fuselage, a mathematical model...
In the context of the transmission of airborne noise into an aircraft fuselage, a mathematical model...
When a panel is excited, either structurally or acoustically, sound is radiated from the panel. Prev...
The sound transmission loss of lightweight structures can be increased by the application of facing ...
Sound transmission through a system of double shells, lined with poroelastic material in the presenc...
A mathematical model is presented for the transmission of airborne noise through the walls of an ort...
In the context of the transmission of airborne noise into an aircaft fuselage, a mathematical model ...
An important dip in the sound transmission loss of curved panels occurs at the ring frequency. The r...
In an effort to improve understanding of the phenomenon of noise transmission through the sidewalls ...
Models of both flat and curved fuselage panels were tested for their sound transmission characterist...
In the context of the transmission of airborne noise into an aircraft fuselage, a mathematical model...
A light aircraft fuselage was modeled as a half-scale cylindrical shell to study the sound transmiss...
Sound transmission through an infinite cylindrical sandwich shell is studied in the context of the t...
Sound transmission through an infinite cylindrical sandwich shell is studied in the context of the t...
Analytical and semi-empirical methods for determining the transmission of sound through isolated pan...
In the context of the transmission of airborne noise into an aircraft fuselage, a mathematical model...
In the context of the transmission of airborne noise into an aircraft fuselage, a mathematical model...
When a panel is excited, either structurally or acoustically, sound is radiated from the panel. Prev...
The sound transmission loss of lightweight structures can be increased by the application of facing ...
Sound transmission through a system of double shells, lined with poroelastic material in the presenc...
A mathematical model is presented for the transmission of airborne noise through the walls of an ort...
In the context of the transmission of airborne noise into an aircaft fuselage, a mathematical model ...
An important dip in the sound transmission loss of curved panels occurs at the ring frequency. The r...
In an effort to improve understanding of the phenomenon of noise transmission through the sidewalls ...