Navigation
Secondary menu
Content
Footer
Photo library
YouTube LHEEA
Directory
en
fr
AUTRES SITES
Centrale Nantes
https://www.ec-nantes.fr/
Lien vers https://www.ec-nantes.fr/
Centre national de la recherche scientifique - CNRS
Centre National de la Recherche Scientifique
https://www.cnrs.fr/
Lien vers https://www.cnrs.fr/
Intranet personnels LHEEA
https://intranet-lheea.ec-nantes.fr/
Lien vers https://intranet-lheea.ec-nantes.fr/
THeoREM
http://theorem-infrastructure.org/version-francaise/
Lien vers http://theorem-infrastructure.org/version-francaise/
Site Web FLOAWER
https://www.floawer-h2020.eu/
Lien vers https://www.floawer-h2020.eu/
LABORATOIRE DE RECHERCHE EN HYDRODYNAMIQUE, ÉNERGETIQUE ET ENVIRONNEMENT ATMOSPHERIQUE
Search
menu
close
The laboratory
The laboratory
The laboratory
NEWS AND EVENTS
ORGANIZATION
PARTNERSHIPS AND PROJECTS
Research projects & collaborations
Networks
JOB AND INTERNSHIP OFFERS
VIRTUAL TOUR
THE LHÉEA IN THE PRESS
Topics
Research groups
Research groups
Research groups
DAUC-DYNAMICS OF URBAN AND COASTAL ATMOSPHERE
Projects and partnerships
Staff
IIHNE-INTERFACES & INTERACTIONS IN NUMERICAL & EXPERIMENTAL HYDRODYNAMICS
Projects and partnerships
Staff
MELUHSINE-NUMERICAL MODELLING IN HYDRODYNAMICS FOR HEALTH & ENGINEERING
Projects and partnerships
Staff
METHRIC-MODELLING OF INCOMPRESSIBLE TURBULENT FLOWS AT HIGH REYNOLDS NUMBERS AND COUPLINGS
Projects and partnerships
Staff
D2SE-DECARBONIZATION & DEPOLLUTION OF ENERGY SYSTEMS
Projects and partnerships
Staff
Test facilities
Test facilities
Test facilities
OCEAN TANKS
Towing tank
Hydrodynamic and Ocean Engineering Tank
Shallow water tank
Recirculating canal
Ocean Tank staff
SEM-REV, Offshore test site
ENGINE AND VEHICLE TEST BENCHES
Engine test benches
Turbocharger test benches
Vehicle test bench
TEST FACILITIES FOR MICROMETEOROLOGY AND WIND ENGINEERING
Atmospheric wind tunnel
Aerodynamic wind tunnel
LiDAR-Light Detection And Ranging
ONEVU
Training in and via research
Training in and via research
Training in and via research
MASTERS AND SPECIALISATIONS
PhD
Research impact
Research impact
Research impact
PUBLICATIONS
INDUSTRIAL CHAIRS & PARTNERSHIPS
SOFTWARE AND PATENTS
SCIENTIFIC MEDIATION
Footer
Footer
Photo library
YouTube LHEEA
Directory
English version
The laboratory
NEWS AND EVENTS
The laboratory
NEWS AND EVENTS
ORGANIZATION
PARTNERSHIPS AND PROJECTS
Research projects & collaborations
Networks
JOB AND INTERNSHIP OFFERS
VIRTUAL TOUR
THE LHÉEA IN THE PRESS
Publication of the SPECIES project report on the potential impact of MRE project power cables on coastal benthic ecosystems
The summary report of the SPECIES project, which was published on 21 May 2021, documents the potential impact associated with the submarine power cables of MRE projects, a recurring issue in consultation processes. The results of this project, coordinated by France Energies Marines and under the scientific direction of Ifremer, are reassuring and do not show any major negative impacts, but do call for further study, particularly with regard to the impact of electromagnetic fields in situ. The SEM-REV team contributed to this project.
on
May 21, 2021
Environmental issues
The first commercial offshore wind farms will soon be established in France and significant focus is placed on their potential environmental impact. Amongst the concerns of the both the general public and scientists, and regularly raised during the consultation phase, is the question of the potential effects of underwater electrical cables. It is also an issue that is carefully examined by the environmental authority, which evaluates the regulatory impact studies of wind farm projects.
Benthos under the microscope
The collaborative SPECIES project, carried out between 2017 and 2020, aimed to answer this question, an essential undertaking given the lack of scientific data available on the subject. Studies as part of this project focused on the potential interactions between the electrical connection cables of MRE projects and benthic organisms (benthos). Benthos live on the seabed, are not very mobile, and would therefore appear to be the most exposed marine organisms. The research was conducted along three main lines: in situ measurement of the physical effects generated by the cables (modification of the habitat, electromagnetic fields, thermal radiation), in situ study of the impact of cable presence on the fauna and flora living on the seabed in coastal areas, and laboratory study of the potential impact of electromagnetic fields on the behaviour of the European lobster (Homarus gammarus) and the scallop (Pecten maximus).
Reassuring results
The project allowed for better characterisation of physical disturbance during the operational phase. The heating generated by cables laid (not buried) on the seabed is negligible, while the intensity of the electromagnetic fields emitted by the various cables studied is weak and localised (around a few nT at 10 m, to a few µT at 2 m, while the earth's magnetic field is around 50 µT at our latitudes). Furthermore, the protective structures of unmoored cables can provide a favourable habitat for many fixed and mobile species, including structural and commercial species. Therefore, no drastic negative impact of submarine power cables on benthic ecosystems has been demonstrated. Nevertheless, the impact of the electromagnetic field, which is apparently weak for the benthos under experimental conditions, remains to be assessed in situ in the most exposed sectors (dense cable networks) before it can be excluded from the debate on environmental concerns associated with MRE projects.
Future prospects
The project has been instrumental in developing and testing tools for the measurement of electromagnetic fields at sea and for laboratory experimentation. It has also served to define clear and effective recommendations for studying the impact of electric cables on the invertebrate communities of soft-sediment and rocky seabeds. Research should nevertheless be pursued in order to study in greater depth certain issues that remain insufficiently documented, such as the characterisation of sensitivity thresholds to magnetic fields, or impact accumulation. This is all the more important given that the number and power of submarine cables are set to grow significantly in French coastal waters.
About SPECIES
The SPECIES or Submarine Power Cables Interactions with Environment & associated Surveys project launched in 2016. Coordinated by France Energies Marines and under the scientific direction of Ifremer, the project brought together a consortium of nine academic and private partners with complementary skills and input.
This project benefits from State aid managed by the French National Research Agency (ANR) under the Investments for the Future programme, financial support from the members and partners of France Energies Marines and public funding from the Brittany and Normandy regions.
Published on June 21, 2021
Updated on October 27, 2022
Share :
Facebook
X
Linkedin
More news
Successful installation of the new offshore cables: SEM-REV 2.0 is now operational offshore!
Sealhyfe, the world's first offshore hydrogen production test platform, connected to Centrale Nantes' SEM-REV offshore test site
Kick-off of the Velella R&D project which aims to reduce the environmental impact of floating wind turbines
To learn more:
Press release on France Énergies Marines website:
https://www.france-energies-marines.org/nos-actualites/articles/rapport-public-issu-du-projet-species/
Download the full report:
https://www.france-energies-marines.org/wp-content/uploads/2021/06/rapport-synthese-species-EN-BD.pdf
NEWS ARCHIVE
News 2022
News 2021
News 2020
News 2019
News 2018
News 2017
PRESS REVIEW
2023
2022
2021
2020
2019
2018
2017
2016
2008-2015
https://lheea.ec-nantes.fr/lheea/news-and-events/publication-du-rapport-de-synthese-du-projet-species-sur-les-impacts-potentiels-des-cables-electriques-de-raccordement-des-projets-emr-sur-les-ecosystemes-benthiques-cotiers