Zoeken
Zoeken kan via de modus 'eenvoudig zoeken' (één veld) of uitgebreid via 'geavanceerd zoeken' (meerdere velden). Zo kan je bv. zoeken op een combinatie van een auteursnaam (auteur), een jaartal (jaar) en een documenttype.
Boekenmand
Nuttige resultaten kan je aanvinken en toevoegen aan een mandje. De inhoud hiervan kan je exporteren of afdrukken (naar bv. PDF).
RSS
Op de hoogte blijven van nieuw toegevoegde publicaties binnen uw interessegebied? Dit kan door een RSS-feed (?) te maken van jouw zoekopdracht.
nieuwe zoekopdracht
Decadal trends in macrobenthic communities in offshore wind farms: Disentangling turbine and climate effects
Jammar, C.; Reynés-Cardona, A.; Vanaverbeke, J.; Lefaible, N.; Moens, T.; Degraer, S.; Braeckman, U. (2025). Decadal trends in macrobenthic communities in offshore wind farms: Disentangling turbine and climate effects. J. Sea Res. 203: 102557. https://dx.doi.org/10.1016/j.seares.2024.102557
In: Journal of Sea Research. Elsevier/Netherlands Institute for Sea Research: Amsterdam; Den Burg. ISSN 1385-1101; e-ISSN 1873-1414, meer
| |
Trefwoorden |
Aquatic sciences > Marine sciences > Ecology > Marine ecology Climate Macrobenthos Renewable energy Marien/Kust |
Author keywords |
Long-term; Offshore wind farms; Turbine |
Auteurs | | Top |
- Jammar, C.
- Reynés-Cardona, A.
- Vanaverbeke, J.
- Lefaible, N.
|
- Moens, T.
- Degraer, S.
- Braeckman, U.
|
|
Abstract |
We present results of a study covering 13 years of data (2008–2020), investigating for the first time the combined impacts of offshore windfarm (OWF) turbine-related and climate-related variables on soft-sediment macrobenthic communities in the Southern North Sea, focusing on two Belgian OWFs, Belwind and C-Power. We hypothesized that both turbine presence alongside climate change would affect macrobenthos in the long-term. Our analysis revealed that climate variables, particularly sea surface temperature (SST) influenced macrobenthos abundance, species richness and diversity. Species richness was additionally affected by the North Atlantic Oscillation (NAO). While most community indices increased with rising SST, diversity declined with higher temperatures. Our analysis supported that the already known short-term (max. 3 years) turbine-related impacts are consistent through time (13 years). Sediments near turbines and in deeper waters were richer in organic matter, characterized by finer sand, and supported more enriched soft-sediment communities compared to locations further away. A transition from the originally prevailing Nephtys cirrosa community towards a more diverse macrobenthic community was observed near the turbines. Our study emphasizes the need for long-term studies and the importance of distinguishing turbine presence from climate change effects when assessing the impacts of OWFs on marine ecosystems. |
IMIS is ontwikkeld en wordt gehost door het VLIZ.