University of the Highlands and Islands
Utilising novel methods to determine potential interactions between subsea power cables and benthic reef forming species <i>limaria hians</i> and m<i>odiolus modiolus</i>
Abstract
dc:description.abstractThe installation of oshore marine renewable energy devices is expanding rapidly as the world<br/>moves to combat a warming planet by reducing the carbon footprint of energy generation.<br/>A consequence of this is the installation of infrastructure into new areas leading to more interactions<br/>between new benthic communities and infrastructure such as subsea power cables.<br/>Developers are now required to have a net biodiversity gain on the environment and as such,<br/>require a better understanding of how infrastructure impacts habitats and species conservation<br/>interests. Two such species are the biogenic reef building bivalves Limaria hians and Modiolus<br/>modiolus, Priority Marine Feature (PMF) species in Scotland. Both species build expansive<br/>reefs across the seabed meaning subsea power cables making landfall are inherently likely to<br/>encounter these reefs causing presently unknown impacts. Using a variety of methods and technologies,<br/>the potential of cable routing encounters with both of these species, remote sensing of<br/>L. hians reef habitat and the physical impact of cable presence on M. modiolus were assessed.<br/>Habitat suitability models for each species were developed to predict the amount of habitat<br/>considered suitable for each species and this was compared with potential interactions with<br/>the subsea cabling infrastructure in Scotland. Much of the suitable habitat for each species<br/>runs parallel to the coast increasing the likelihood of intersecting with developments, especially<br/>as cables make landfall or transit narrower bodies of water between land such as island interconnectors.<br/>With remote sensing, it was not possible to visually identify an acoustic signature<br/>of L. hians with the methods employed in this study, like has been shown to be possible with M.<br/>modiolus. However, signicant statistical variation was observed within bathymetry derivatives<br/>between areas of conrmed presence vs absence. Additionally, it was demonstrated that despite<br/>L. hians cryptic appearance, it was possible to use broad classication of images to map large<br/>areas of reef habitat when used in combination with high resolution ground truthing ROV<br/>video. The physical impacts of cable presence of M. modiolus were shown to have an impact on reef presence in the very near proximity to an installed cables with an undetermined secondary<br/>eect at moderate distance. Overall, the footprint of the impact was small in comparison to<br/>the whole reef scale, but further observation of this case study could reveal the extent to which<br/>recolonisation by this long-lived species takes place close to the cable.<br/>Research undertaken for this thesis has shown that subsea power cables are likely to interact<br/>with L. hians and M. modiolus reefs but going forward but there are several methods and<br/>technologies which can assist in mitigation of potential negative impacts. Improving knowledge<br/>of where these reef habitats are found can help lower the impacting footprint of subsea cable<br/>installation at the project design phase through careful routing and design with the added<br/>advantage of minimising inadvertent licencing issue which may arise during construction if<br/>such benthic PMF features are unexpectedly encountered. However, because of their long-lived<br/>nature and slow potential for expansion, further long-term research is required into the capacity<br/>of these reef to recover from disturbance from renewables infrastructure.<br/>This thesis' data chapter structure should be read in order to assess the 'where', 'how' and<br/>'what' of industry interactions with these case species. 'Where' are they located (chapter 2),<br/>'how' to we identify them (chapter 3) and 'what' are the impacts of industry to them (chapter<br/>4).
Degree
thesis:*- Name dc:type.qualificationname
- Doctor of Philosophy (awarded by UHI)
- Level dc:type.qualificationlevel
- Doctoral Thesis
- Grantor dc:publisher.institution
- University of the Highlands and Islands
- Year dc:date.issued
- 2024
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- MacKenzie, Euan
- Advisors dc:contributor.advisor
-
- Fox, Clive
- Howe, John
Rights
- Language dc:language
- eng
Identifiers
dc:identifier.*- Identifier
- oai:pure.atira.dk:studenttheses/f73c35db-2e31-404c-8619-8e7cc387a566
- OAI identifier oai:identifier
- oai:pure.atira.dk:studenttheses/f73c35db-2e31-404c-8619-8e7cc387a566