High hydrodynamic noise is a threat to the survival of underwater vehicles. We investigated a noise suppression mechanism by putting leading-edge serrations on the sail hull of a scaled SUBOFF model, through numerical calculation and an experimental test. We found that the cone shape of leading-edge serrations can decrease the intensity of the adverse pressure gradient and produce counter-rotation vortices, which destroy the formation of the horseshoe vortex and delay the tail vortex. To achieve the optimum hydrodynamic noise reduction, we summarized the parameters of leading-edge serrations. Then, two steel models were built, according to the simulation. We measured the hydrodynamic noise based on the reverberation method in a gravity wate...
The flow and noise created by sawtooth trailing-edge serrations has been studied experimentally at a...
Paper AIAA 2012-2186This paper presents the results of an experimental investigation exploring the n...
Aerofoils operating in a turbulent flow generate broadband noise by scattering vorticity into sound ...
The hydrodynamic noise from the horseshoe vortex can greatly destroy the acoustic stealth of underwa...
Hydrodynamic noise is one of the three major noise sources of underwater vehicles. The sonar dome is...
Loud hydrodynamic noise is not only potentially harmful to the health of organisms in the ocean, but...
In order to solve the underwater noise pollution and improve the acoustic stealth performance of und...
Flow-induced noise from the sail hull, which is induced by the horseshoe vortex, the boundary layer ...
An analytical model is developed for the prediction of noise radiated by an aerofoil with leading ed...
Underwater radiated noise (URN) has a negative impact on the marine acoustic environment where it ca...
Underwater radiated noise (URN) has a negative impact on the marine acoustic environment where it ca...
Underwater radiated noise (URN) has a negative impact on the marine acoustic environment where it ca...
When underwater vehicles are sailing, high hydrodynamic noise will be generated through the opening ...
Underwater radiated noise (URN) has a negative impact on the marine acoustic environment where it ca...
Underwater radiated noise (URN) has a negative impact on the marine acoustic environment where it ca...
The flow and noise created by sawtooth trailing-edge serrations has been studied experimentally at a...
Paper AIAA 2012-2186This paper presents the results of an experimental investigation exploring the n...
Aerofoils operating in a turbulent flow generate broadband noise by scattering vorticity into sound ...
The hydrodynamic noise from the horseshoe vortex can greatly destroy the acoustic stealth of underwa...
Hydrodynamic noise is one of the three major noise sources of underwater vehicles. The sonar dome is...
Loud hydrodynamic noise is not only potentially harmful to the health of organisms in the ocean, but...
In order to solve the underwater noise pollution and improve the acoustic stealth performance of und...
Flow-induced noise from the sail hull, which is induced by the horseshoe vortex, the boundary layer ...
An analytical model is developed for the prediction of noise radiated by an aerofoil with leading ed...
Underwater radiated noise (URN) has a negative impact on the marine acoustic environment where it ca...
Underwater radiated noise (URN) has a negative impact on the marine acoustic environment where it ca...
Underwater radiated noise (URN) has a negative impact on the marine acoustic environment where it ca...
When underwater vehicles are sailing, high hydrodynamic noise will be generated through the opening ...
Underwater radiated noise (URN) has a negative impact on the marine acoustic environment where it ca...
Underwater radiated noise (URN) has a negative impact on the marine acoustic environment where it ca...
The flow and noise created by sawtooth trailing-edge serrations has been studied experimentally at a...
Paper AIAA 2012-2186This paper presents the results of an experimental investigation exploring the n...
Aerofoils operating in a turbulent flow generate broadband noise by scattering vorticity into sound ...