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A research project led by coastal and ocean scientists in NUI Galway and the Marine Institute involves the deployment of a combination of smart buoys and time-lapse imaging to measure storm impacts and support the development of coastal flood and erosion defences.

The project, Brandon Bay on the Dingle Peninsula, Co Kerry, involves:

  • A new waverider buoy provided by Sustainable Energy Authority of Ireland to measure wave height, wave direction, wave period, surface currents, and water temperature as well as storm impact
  • Data being made available to view or download on the Marine Institute supported website Digital Ocean, a web portal to view data collected in and around Ireland's maritime zone.
  • The installation of a shoreline monitoring system along Brandon Bay at three sites, which will capture images of the beach every 10 minutes during daylight hours over the next 12 months, to identify the time periods when wave run-up is high enough to reach the dune toe and potentially cause coastal erosion. This research is funded by Geological Survey Ireland.

Dr Eugene Farrell, Discipline of Geography and Ryan Institute's Centre for Ocean Research and Exploration (COREx), NUI Galway, said: "We want to improve existing coastal change models by developing better insights into why does change occur and how much change will occur if we dial up climate projections for rising sea levels and storminess. To answer these questions we require process-response coastal models and these are only possible if nearshore observations from wave buoys such as the one in Brandon Bay are deployed over long time periods to capture all the seasons.

"We already know that changes along the coast from elevated storm surge and wave run-up result in changes in seabed and beach elevations. The data captured by the waverider will play an integral part in dismantling the important connections between different storm types such as size, direction, duration, clustering and coastal response that allows us to share real time ocean observations that can be used to address coastal erosion and coastal flood protection.

The wave buoy pictured after deployment in Brandon Bay on the 1, December 2020. Photo: Eugene Farrell, NUI GalwayThe wave buoy pictured after deployment in Brandon Bay on the 1, December 2020. Photo: Eugene Farrell, NUI Galway

Alan Berry, Manager of Marine Research Infrastructures at the Marine Institute said, "The wave buoy at Brandon Bay will enable researchers to observe and understand how our ocean is changing and determine how to respond to current and future patterns of change. Open access to this data on Ireland's Digital Ocean website is valuable to climate researchers in Ireland and across Europe."

The Brandon Bay long-term waverider project is co-led by Dr Eugene Farrell, Discipline of Geography, Sheena Parsons, Earth and Ocean Sciences, and Dr Stephen Nash and Andi Egon, Civil Engineering in NUI Galway, and Alan Berry and Conall O'Malley from the Marine Institute with support from the Sustainable Energy Authority of Ireland.

In September 2020, a Coastal Change Technical Working Group was established within the Irish government and tasked with overseeing the development of a scoping report on a national coastal change management strategy. They have envisaged that the scoping report will address issues related to 'baseline and other data capture and research requirements to inform developing, implementing and monitoring a national coastal management strategy, to include potential damages assessment'.

Dr Eugene Farrell adds: "We feel it is our responsibility as coastal scientists to provide the requisite baseline information and recommendations to guide future research along the coast in order to fill knowledge gaps. This is an integral part of the Brandon Bay Waverider project and can be used as a demonstration project so that future investment in coastal infrastructure can be identified.

"Cumulatively, our approach requires a large team of experts to work together. The Maharees in Brandon Bay is already becoming a hub for coastal science thanks to the active community group in the area, the Maharees Conservation Association. There is an urgent need to increase our understanding of coastal change so that that we can better protect our coastal communities and design conservation plans for coastal ecosystems whose dynamic boundaries move in response to changing climate conditions."

The Brandon Bay Waverider project is supported by the Marine Institute, NUI Galway and MaREI, the SFI Research Centre for Energy, Climate and Marine research and the Sustainable Energy Authority of Ireland.

Wave data results from the Brandon Bay Waverider project can be viewed here

Photo: The wave buoy pictured after deployment in Brandon Bay on the 1, December 2020. Photo: Eugene Farrell, NUI Galway


About the Waverider Buoy

The data from the buoy is being used to validate a state-of-the-art high-resolution coastal erosion modelling system comprising of wave, tide and sediment transport models that is under co-development in Civil Engineering, Earth and Ocean Sciences and Geography disciplines at NUI Galway and the Marine Institute since early 2019. The key attraction of these specialised numerical ocean models is their predictive capability. The model predictions are first tested against real-time observations in the bay and then tested for different climate change scenarios such as rising water levels or increasing wave heights.

For example, once the model is validated using the wave buoy observations the project team can test outcomes using the OPW sea level rise scenarios: (1) conservative Mid-Range Future Scenario which uses a sea-level rise of 0.5m by the year 2100 and (2) a High-End Future Scenario, which uses the maximum projected sea-level rise of 1.05m for the year 2100.

Superimposed on these changing sea levels the group can investigate how extreme storms and wave heights will impact the coast and determine how these impacts will be manifested on the coast, such as rates of shoreline retreat or increasing vulnerability of coastal communities and infrastructure.

The yellow spherical wave rider is one metre in diameter, is equipped with an antenna and light and is anchored to the seabed by a mooring. The light will flash yellow for five seconds every 20 seconds in hours of darkness. An accelerometer mounted within the buoy registers the rate at which the buoy is rising or falling with the waves. This type of 'heave, pitch, and roll buoy' is the most commonly used buoy for measuring waves in deep water. It measures the surface height and slope in different orthogonal directions to yield the horizontal and vertical displacements of the buoy.

The Brandon Bay Waverider Acknowledgements

Marine Institute & Sustainable Energy Authority of Ireland

The Marine Institute, supported by the Sustainable Energy Authority of Ireland, have been instrumental in the execution of this project. They have been very generous with their time (research-in-kind) and sharing their expertise and equipment. We would especially like to acknowledge the leadership of Alan Berry, Section Manager, Marine Research Infrastructures and Conall O'Malley, both from the Marine Institute.

The Marine Institute is a State agency responsible for marine research, technology development and innovation in Ireland whose remit is: "to undertake, to coordinate, to promote and to assist in marine research and development and to provide such services related to research and development, that in the opinion of the Institute, will promote economic development and create employment and protect the marine environment." This project exemplifies how scientific progress can be made when academics link up with management agencies like the Marine Institute.

The Sustainable Energy Authority of Ireland is Ireland's national energy agency aiming to create a cleaner energy future by making Ireland's energy sustainable, secure, affordable and clean. SEAI supports the Irish offshore renewable energy sector by advising the government on policy, offering grant support schemes, developing test site infrastructure, and providing information through the Ocean Energy Ireland portal. The Brandon Bay wave rider provided by SEAI will be part of the wave monitoring network of coastal buoys operated on behalf of SEAI by the Marine Institute.

The Marine Institute work with P&O Maritime Logistics who co-led the technical parts of the deployment including the installation of the base station and also the actual deployment.

NUI Galway

The NUI Galway Research Office provided funding support. This office is part of the Office for the Vice President for Research and works closely with the Innovation Office, the Researcher Development Centre and other professional services supporting the NUI Galway research community. We would especially like to acknowledge the support of Aengus Parsons, Director of the Research Office and Professor Lokesh Joshi, Vice President for Research for their support.

MaREI

MaREI is the SFI Research Centre for Energy, Climate and Marine research and innovation co-ordinated by the Environmental Research Institute (ERI) at University College Cork and also based in NUI Galway. We would especially like to acknowledge the support of Dr Stephen Nash in Civil Engineering in NUI Galway. The data from the wave buoy are an integral part of an ongoing MaREI funded PhD programme in NUI Galway.

Maharees Conservation Association and partners

The ongoing coastal and ocean research is not possible without the support of the Maharees community. We are very excited to contribute to our scientific understanding of coastal and ocean dynamics in the bay area with the hope that the results will support ongoing efforts by the community to build their resilience to pressures from storms and people. We would especially like to acknowledge Mr Paddy Buckley and his family for allowing us to install the base station in their home in the Maharees. The NUI Galway team would also like to thank Kerry County Council, National Parks and Wildlife Service and OPW for supporting coastal research in the area.

Published in Marine Science

#MCIB - The families of two fishermen found dead at sea off the Skerries last April may never uncover the circumstances that led to their demise. But the official report into the incident indicated that the absence of lifejackets was a significant contributing factor.

Ronan Browne (26) and David Gilsenan (41) were reported missing on the evening of 1 April after failing to return from a trip tending to lobster pots.

Their vessel, Lady Linda, was found the following morning upturned in an oil slick off Clogherhead with no sign of the crew.

It wasn't until a week later that their bodies were discovered caught in the vessel's fishing gear some five miles east of Clogherhead, as previously reported on Afloat.ie.

Post-mortem results found that both men died from drowning, with Gilsenan also showing signs of hypothermia.

With no eyewitnesses to the incident, the report by the Marine Casualty Investigation Board (MCIB) indicated a number of possible causes from eqiupment malfunction or shifting of lobster pots on deck, to the wave height and weather conditions on the day, which were reportedly deteriorating when the boat left port.

It also said that Browne and Gilsenan "were lifelong friends, both men were experienced and qualified marine engineers in the fishing vessel industry. Both men were experienced in boat handling and fishing and had worked together on many occasions."

But the report emphasised the lack of personal flotation devices (PFDs) on board, and noted that emergency equipment was stored under the deck and not easily accessible.

The MCIB's recommendations include a review of the code of practice for fishing vessels under 15m to establish "revised stability critera" and ensuring that all boats are fitted with automatic radio beacons that deploy upon capsize.

In a separate incident, lack of proper maintenance led to an unlicenced boat taking on water off Co Kerry last August.

The Claire Buoyant was carrying one crew, five passengers and 21 sheep from Beginish Island to Ventry when the vessel began to lose stability.

Skipper Eoin Firtear - who the MCIB described as having "limited sea-going experience" - and his five passengers were rescued by passenger ferry. All sheep were jettisoned overboard, with 18 eventually recovered.

The report reminded that the carriage of livestock should only be undertaken in appropriately certified vessels.

Published in MCIB

Irish Fishing industry 

The Irish Commercial Fishing Industry employs around 11,000 people in fishing, processing and ancillary services such as sales and marketing. The industry is worth about €1.22 billion annually to the Irish economy. Irish fisheries products are exported all over the world as far as Africa, Japan and China.

FAQs

Over 16,000 people are employed directly or indirectly around the coast, working on over 2,000 registered fishing vessels, in over 160 seafood processing businesses and in 278 aquaculture production units, according to the State's sea fisheries development body Bord Iascaigh Mhara (BIM).

All activities that are concerned with growing, catching, processing or transporting fish are part of the commercial fishing industry, the development of which is overseen by BIM. Recreational fishing, as in angling at sea or inland, is the responsibility of Inland Fisheries Ireland.

The Irish fishing industry is valued at 1.22 billion euro in gross domestic product (GDP), according to 2019 figures issued by BIM. Only 179 of Ireland's 2,000 vessels are over 18 metres in length. Where does Irish commercially caught fish come from? Irish fish and shellfish is caught or cultivated within the 200-mile exclusive economic zone (EEZ), but Irish fishing grounds are part of the common EU "blue" pond. Commercial fishing is regulated under the terms of the EU Common Fisheries Policy (CFP), initiated in 1983 and with ten-yearly reviews.

The total value of seafood landed into Irish ports was 424 million euro in 2019, according to BIM. High value landings identified in 2019 were haddock, hake, monkfish and megrim. Irish vessels also land into foreign ports, while non-Irish vessels land into Irish ports, principally Castletownbere, Co Cork, and Killybegs, Co Donegal.

There are a number of different methods for catching fish, with technological advances meaning skippers have detailed real time information at their disposal. Fisheries are classified as inshore, midwater, pelagic or deep water. Inshore targets species close to shore and in depths of up to 200 metres, and may include trawling and gillnetting and long-lining. Trawling is regarded as "active", while "passive" or less environmentally harmful fishing methods include use of gill nets, long lines, traps and pots. Pelagic fisheries focus on species which swim close to the surface and up to depths of 200 metres, including migratory mackerel, and tuna, and methods for catching include pair trawling, purse seining, trolling and longlining. Midwater fisheries target species at depths of around 200 metres, using trawling, longlining and jigging. Deepwater fisheries mainly use trawling for species which are found at depths of over 600 metres.

There are several segments for different catching methods in the registered Irish fleet – the largest segment being polyvalent or multi-purpose vessels using several types of gear which may be active and passive. The polyvalent segment ranges from small inshore vessels engaged in netting and potting to medium and larger vessels targeting whitefish, pelagic (herring, mackerel, horse mackerel and blue whiting) species and bivalve molluscs. The refrigerated seawater (RSW) pelagic segment is engaged mainly in fishing for herring, mackerel, horse mackerel and blue whiting only. The beam trawling segment focuses on flatfish such as sole and plaice. The aquaculture segment is exclusively for managing, developing and servicing fish farming areas and can collect spat from wild mussel stocks.

The top 20 species landed by value in 2019 were mackerel (78 million euro); Dublin Bay prawn (59 million euro); horse mackerel (17 million euro); monkfish (17 million euro); brown crab (16 million euro); hake (11 million euro); blue whiting (10 million euro); megrim (10 million euro); haddock (9 million euro); tuna (7 million euro); scallop (6 million euro); whelk (5 million euro); whiting (4 million euro); sprat (3 million euro); herring (3 million euro); lobster (2 million euro); turbot (2 million euro); cod (2 million euro); boarfish (2 million euro).

Ireland has approximately 220 million acres of marine territory, rich in marine biodiversity. A marine biodiversity scheme under Ireland's operational programme, which is co-funded by the European Maritime and Fisheries Fund and the Government, aims to reduce the impact of fisheries and aquaculture on the marine environment, including avoidance and reduction of unwanted catch.

EU fisheries ministers hold an annual pre-Christmas council in Brussels to decide on total allowable catches and quotas for the following year. This is based on advice from scientific bodies such as the International Council for the Exploration of the Sea. In Ireland's case, the State's Marine Institute publishes an annual "stock book" which provides the most up to date stock status and scientific advice on over 60 fish stocks exploited by the Irish fleet. Total allowable catches are supplemented by various technical measures to control effort, such as the size of net mesh for various species.

The west Cork harbour of Castletownbere is Ireland's biggest whitefish port. Killybegs, Co Donegal is the most important port for pelagic (herring, mackerel, blue whiting) landings. Fish are also landed into Dingle, Co Kerry, Rossaveal, Co Galway, Howth, Co Dublin and Dunmore East, Co Waterford, Union Hall, Co Cork, Greencastle, Co Donegal, and Clogherhead, Co Louth. The busiest Northern Irish ports are Portavogie, Ardglass and Kilkeel, Co Down.

Yes, EU quotas are allocated to other fleets within the Irish EEZ, and Ireland has long been a transhipment point for fish caught by the Spanish whitefish fleet in particular. Dingle, Co Kerry has seen an increase in foreign landings, as has Castletownbere. The west Cork port recorded foreign landings of 36 million euro or 48 per cent in 2019, and has long been nicknamed the "peseta" port, due to the presence of Spanish-owned transhipment plant, Eiranova, on Dinish island.

Most fish and shellfish caught or cultivated in Irish waters is for the export market, and this was hit hard from the early stages of this year's Covid-19 pandemic. The EU, Asia and Britain are the main export markets, while the middle Eastern market is also developing and the African market has seen a fall in value and volume, according to figures for 2019 issued by BIM.

Fish was once a penitential food, eaten for religious reasons every Friday. BIM has worked hard over several decades to develop its appeal. Ireland is not like Spain – our land is too good to transform us into a nation of fish eaters, but the obvious health benefits are seeing a growth in demand. Seafood retail sales rose by one per cent in 2019 to 300 million euro. Salmon and cod remain the most popular species, while BIM reports an increase in sales of haddock, trout and the pangasius or freshwater catfish which is cultivated primarily in Vietnam and Cambodia and imported by supermarkets here.

The EU's Common Fisheries Policy (CFP), initiated in 1983, pooled marine resources – with Ireland having some of the richest grounds and one of the largest sea areas at the time, but only receiving four per cent of allocated catch by a quota system. A system known as the "Hague Preferences" did recognise the need to safeguard the particular needs of regions where local populations are especially dependent on fisheries and related activities. The State's Sea Fisheries Protection Authority, based in Clonakilty, Co Cork, works with the Naval Service on administering the EU CFP. The Department of Agriculture, Food and Marine and Department of Transport regulate licensing and training requirements, while the Marine Survey Office is responsible for the implementation of all national and international legislation in relation to safety of shipping and the prevention of pollution.

Yes, a range of certificates of competency are required for skippers and crew. Training is the remit of BIM, which runs two national fisheries colleges at Greencastle, Co Donegal and Castletownbere, Co Cork. There have been calls for the colleges to be incorporated into the third-level structure of education, with qualifications recognised as such.

Safety is always an issue, in spite of technological improvements, as fishing is a hazardous occupation and climate change is having its impact on the severity of storms at sea. Fishing skippers and crews are required to hold a number of certificates of competency, including safety and navigation, and wearing of personal flotation devices is a legal requirement. Accidents come under the remit of the Marine Casualty Investigation Board, and the Health and Safety Authority. The MCIB does not find fault or blame, but will make recommendations to the Minister for Transport to avoid a recurrence of incidents.

Fish are part of a marine ecosystem and an integral part of the marine food web. Changing climate is having a negative impact on the health of the oceans, and there have been more frequent reports of warmer water species being caught further and further north in Irish waters.

Brexit, Covid 19, EU policies and safety – Britain is a key market for Irish seafood, and 38 per cent of the Irish catch is taken from the waters around its coast. Ireland's top two species – mackerel and prawns - are 60 per cent and 40 per cent, respectively, dependent on British waters. Also, there are serious fears within the Irish industry about the impact of EU vessels, should they be expelled from British waters, opting to focus even more efforts on Ireland's rich marine resource. Covid-19 has forced closure of international seafood markets, with high value fish sold to restaurants taking a large hit. A temporary tie-up support scheme for whitefish vessels introduced for the summer of 2020 was condemned by industry organisations as "designed to fail".

Sources: Bord Iascaigh Mhara, Marine Institute, Department of Agriculture, Food and Marine, Department of Transport © Afloat 2020