This paper presents a computationally efficient modeling approach for predicting underwater noise radiation from offshore pile driving. The complete noise prediction model comprises two modules. First, a sound generation module is adopted to capture the interaction between the pile, the fluid, and the seabed, aiming at modeling the sound generation and propagation in the vicinity of the pile. Second, a sound propagation module is developed to propagate the sound field at larger distances from the pile. To couple the input wavefield obtained from the sound generation module, the boundary integral equations (BIEs) are formulated based on the acousto-elastodynamic reciprocity theorem. To advance the mathematical formulation of the BIEs, the Gr...
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...
The growing demand for renewable energy supply stimulates a drastic increase in the deployment rate ...
The prediction of underwater noise and the assessment of the influencing factors on noise transmissi...
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 ...
In this paper, a coupled near-to-far-field numerical model for predicting the acoustic emissions fro...
This study investigates prediction of structure borne noise radiation and propagation from offshore ...
One major long-term goal of the German government is to decrease the green- house gas emissions b...
© 2016 IEEE.The prediction of underwater noise emissions from impact pile driving during near-shore ...
In this paper, a pile-water-soil model is developed for the prediction of sound generated due to imp...
ABSTRACT Underwater noise emission from pile driving within the offshore wind industry is becoming a...
The growing demand for renewable energy supply stimulates a drastic increase in the deployment rate ...
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...
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...
The growing demand for renewable energy supply stimulates a drastic increase in the deployment rate ...
The prediction of underwater noise and the assessment of the influencing factors on noise transmissi...
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 ...
In this paper, a coupled near-to-far-field numerical model for predicting the acoustic emissions fro...
This study investigates prediction of structure borne noise radiation and propagation from offshore ...
One major long-term goal of the German government is to decrease the green- house gas emissions b...
© 2016 IEEE.The prediction of underwater noise emissions from impact pile driving during near-shore ...
In this paper, a pile-water-soil model is developed for the prediction of sound generated due to imp...
ABSTRACT Underwater noise emission from pile driving within the offshore wind industry is becoming a...
The growing demand for renewable energy supply stimulates a drastic increase in the deployment rate ...
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...
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...
The growing demand for renewable energy supply stimulates a drastic increase in the deployment rate ...