This paper assesses the full-scale The Princess Royal vessel Underwater Radiated Noise (URN) characteristics using a CFD method. Also, the cavitation extensions and propeller hydrodynamic characteristics are explored over a wide range of operating conditions. The numerical calculations were carried out using a hybrid method combining the DES and permeable formulation of the FWH equation. In the numerical calculations, two different permeable noise surfaces encapsulating the complete hull and only the propeller and its slipstream were utilised. In order to accurately solve the tip vortex flow and model the tip vortex cavitation (TVC) in the propeller slipstream, the developed V-AMR technique was applied in the numerical calculations together...
A methodology for the prediction of underwater radiated noise from ships is presented and applied to...
The rising environmental awareness of various adverse emissions by commercial shipping has recently ...
There is increased interest in the ability to predict the noise associated with commercial ship prop...
This paper assesses the full-scale The Princess Royal vessel Underwater Radiated Noise (URN) charact...
This study aims to predict the full-scale propeller Underwater Radiated Noise (URN) in cavitating an...
The paper presents SSPA’s work in the EU project AQUO to predict underwater radiated noise (URN) gen...
Shipping noise is considered a primary contributor to anthropogenic noise in oceans. With an expansi...
This study explores the influence of tip vortex cavitation (TVC) on propeller induced URN using a hy...
This paper presents the preliminary results of a numerical study for noise prediction of a benchmark...
This study investigates the effects of grid resolution on hydroacoustic performance of the benchmark...
Being able to predict shipborne noise is of significant importance to international maritime communi...
Anthropogenic noise from a variety of merchant ships has been reported to be a major factor adversel...
Anthropogenic-related underwater radiated noise (URN) has a detrimental impact on marine creatures w...
In this study, the hydrodynamics and noise prediction of a five blade marine propeller were analyzed...
A methodology for the prediction of underwater radiated noise from ships is presented and applied to...
The rising environmental awareness of various adverse emissions by commercial shipping has recently ...
There is increased interest in the ability to predict the noise associated with commercial ship prop...
This paper assesses the full-scale The Princess Royal vessel Underwater Radiated Noise (URN) charact...
This study aims to predict the full-scale propeller Underwater Radiated Noise (URN) in cavitating an...
The paper presents SSPA’s work in the EU project AQUO to predict underwater radiated noise (URN) gen...
Shipping noise is considered a primary contributor to anthropogenic noise in oceans. With an expansi...
This study explores the influence of tip vortex cavitation (TVC) on propeller induced URN using a hy...
This paper presents the preliminary results of a numerical study for noise prediction of a benchmark...
This study investigates the effects of grid resolution on hydroacoustic performance of the benchmark...
Being able to predict shipborne noise is of significant importance to international maritime communi...
Anthropogenic noise from a variety of merchant ships has been reported to be a major factor adversel...
Anthropogenic-related underwater radiated noise (URN) has a detrimental impact on marine creatures w...
In this study, the hydrodynamics and noise prediction of a five blade marine propeller were analyzed...
A methodology for the prediction of underwater radiated noise from ships is presented and applied to...
The rising environmental awareness of various adverse emissions by commercial shipping has recently ...
There is increased interest in the ability to predict the noise associated with commercial ship prop...