Hongmei Hu, Stephan Gerlach, Benedikt Niesterok, Christian Krüger, Carina Juretzek, Michael Bellmann
Offshore wind farms (OWFs) are vital to sustainable energy but generate noise from both noise-intensive construction and decade-long operation. This study investigates continuous operational noise from wind-turbine-generators (WTGs) and OWF-related service vessels. Based on long-term underwater noise measurements and automatic identification system data, 24-h average noise maps were calculated to represent the temporal and spatial cumulative effects of multiple WTGs in combination with service-related vessel traffic, using a time-weighted, range- and frequency dependent propagation model for the selected OWF area. These maps are essential for applications such as project specific environmental-impact-assessments (EIAs) and strategic spatial planning. In situ measurements showed that WTG-generated broadband-noise was 10-20 dB lower than service vessel noise at same distance. The broadband source levels used in the simulation were approximately 151 dB re 1 μPa2 for a single WTG operating at rated power and 171 dB re 1 μPa2 for service vessel. Model results indicate that combined operational noise from WTGs can produce unweighted broadband sound pressure levels up to 112 dB re 1 μPa2 at distances of around 2 km. Service vessels may further extend the acoustic impact range depending on its duration of operation and location, which highlights that vessel noise shall be taken into account in EIAs.