© 2017 Acoustical Society of America. Sound emissions from impact pile driving of raked piles present a significant azimuthal dependence in the radiated sound field due to the non-axisymmetric orientation of the pile. In this work the sound radiation from raked piles is modeled using a finite element method (FEM) model of the pile and near-field region. The near-field model of the sound field is then used as input into a normal mode model to predict the sound radiation in the far-field. The azimuthal dependence of the radiated sound field is shown to be accurately predicted using an equivalent axisymmetric FEM model of the pile configuration, thus negating the need to construct a fully three-dimensional model (3D) of the raked pile. This is...
Anthropogenic noise emission in the marine environment is a key issue nowadays and has drawn the att...
Noise generated by offshore impact pile driving radiates into the air, water and sediment. Predictin...
Noise generated by offshore impact pile driving radiates into the air, water and sediment. Predictin...
In this paper, a coupled near-to-far-field numerical model for predicting the acoustic emissions fro...
Impact pile driving creates intense, impulsive sound that radiates into the surrounding environment....
Impact pile driving creates intense, impulsive sound that radiates into the surrounding environment....
Impact pile driving creates intense, impulsive sound that radiates into the surrounding environment....
Monopiles are by far the most chosen foundation option for most off-shore activities. The installati...
This paper presents a computationally efficient modeling approach for predicting underwater noise ra...
This work investigates the underwater sound emission of marine pile driving over elastic seabeds. Th...
This work investigates the underwater sound emission of marine pile driving over elastic seabeds. Th...
Modelling the sound levels in the water column due to pile driving operations nearby and out to larg...
This study investigates prediction of structure borne noise radiation and propagation from offshore ...
The prediction of underwater noise and the assessment of the influencing factors on noise transmissi...
Noise generated by offshore impact pile driving radiates into the air, water and sediment. Predictin...
Anthropogenic noise emission in the marine environment is a key issue nowadays and has drawn the att...
Noise generated by offshore impact pile driving radiates into the air, water and sediment. Predictin...
Noise generated by offshore impact pile driving radiates into the air, water and sediment. Predictin...
In this paper, a coupled near-to-far-field numerical model for predicting the acoustic emissions fro...
Impact pile driving creates intense, impulsive sound that radiates into the surrounding environment....
Impact pile driving creates intense, impulsive sound that radiates into the surrounding environment....
Impact pile driving creates intense, impulsive sound that radiates into the surrounding environment....
Monopiles are by far the most chosen foundation option for most off-shore activities. The installati...
This paper presents a computationally efficient modeling approach for predicting underwater noise ra...
This work investigates the underwater sound emission of marine pile driving over elastic seabeds. Th...
This work investigates the underwater sound emission of marine pile driving over elastic seabeds. Th...
Modelling the sound levels in the water column due to pile driving operations nearby and out to larg...
This study investigates prediction of structure borne noise radiation and propagation from offshore ...
The prediction of underwater noise and the assessment of the influencing factors on noise transmissi...
Noise generated by offshore impact pile driving radiates into the air, water and sediment. Predictin...
Anthropogenic noise emission in the marine environment is a key issue nowadays and has drawn the att...
Noise generated by offshore impact pile driving radiates into the air, water and sediment. Predictin...
Noise generated by offshore impact pile driving radiates into the air, water and sediment. Predictin...