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Displaying items by tag: tidal energy

A harbour near Melbourne in Australia is probing the potential of its natural tides to develop a new kind of renewable energy hub.

As the Bellarine Times reports, Queenscliff Harbour has partnered with the non-profit Southern Ocean Environmental Link and tidal turbine maker Altum Green Energy to install a device near the harbour’s marina.

The area of Port Phillip Heads, also known as The Rip, is at the narrow entrance to the large bay on which Melbourne lies to the northeast.

Its large tidal flows make it a treacherous stretch for boating and shipping, but a potentially rich one for generating power from the sea.

The joint project is currently collecting measurements at the location to determine its potential and best positioning for the Altum turbine, which is designed to operate in slow-flowing waters such as at ports and bridges, rivers, canals and islands.

The Bellarine Times has more on the story HERE.

Published in Power From the Sea

Exploring development of the “next generation” tidal energy technology is the theme of a new project initiated by NUI Galway (NUIG).

The university says the tidal energy project is part of its “Global Challenges” programme, a targeted research initiative to tackle six of the globe’s most pressing issues.

The project will focus on new technology and tidal turbine blades, site modelling, and the assessment of climate change impact and extreme events on same.

It will include an economic appraisal of tidal energy and the investigation of societal attitudes; and stakeholder engagement to better understand the needs and concerns of tidal energy developers, local authorities and the coastal communities.

It will also research systems to assess the interactions of tidal energy infrastructure with wildlife.

Five PhD researchers will be recruited for the project.

Globally, the tidal energy resource is estimated at more than 1200 terawatts per annum - a unit of power equal to one trillion watts.

The world uses 17.7 terawatts a year, according to the NUIG researchers.

The project will be led by Prof Jamie Goggins, professor of civil engineering, MaREI Centre, Ryan Institute and School of Engineering at NUIG.

He said the project “will engage with multiple stakeholders - including the people living in the coastal communities - to unlock the potential benefits for them in our drive to decarbonise the economy”.

“The just transition is crucial in the work towards decarbonisation. So too is the importance placed on biodiversity and how we enhance the health and resilience of our ocean and coastal communities,”he said.

“ Our aim in the tidal energy project is to create a blueprint to simultaneously achieve these ambitions,”Prof Goggins added.

The NUI Galway Global Challenges fund is part of the university’s new Research and Innovation Strategy 2021-26.

It has six areas of focus - antimicrobial resistance, decarbonisation, democracy, food security, human-centred data, and ocean and coastal health.

Further information is available here

Published in Power From the Sea
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#SeaPower - Northern Ireland is well placed to capitalise on the growing trend towards renewable energy thanks to its unique tidal resources, according to a leading researcher in the field.

Dr Carwyn Frost of Queen’s University Belfast tells Emily McDaid of local tech incubator Catalyst Inc that the Narrows between Strangford Lough and the Irish Sea have the perfect conditions to harness the power of the sea’s tides — in shallow waters away from ocean swell, and more accessible than similar sites in the far north of Scotland.

The area was previously home to the world’s first tidal power station in the form of the SeaGen turbine, and has since been a test site for new projects such as the PowerKite developing the next generation of tidal energy devices.

Silicon Republic has much more on the story HERE.

Published in Power From the Sea

#SeaPower - A prototype tidal energy turbine project in the Shannon Estuary has received almost €100,000 in funding for further development, as the Limerick Post reports.

GKinetic has been testing a scale prototype of its new hydrokinetic turbine for the last year, at a purpose-built facility in Limerick Docks set up in tandem with the Shannon Foynes Port Company.

The new funding of €99,562 from the Sustainable Energy Authority of Ireland’s (SEAI) Prototype Development Fund will support testing on an improved prototype from August for a six-week period, as the company ramps up plans to scale up the design to a 250kW tidal device.

GKinetic’s technology is already being commercialised by fellow Co Limerick company DesignPro, who secured funding earlier this year under the Horizon 2020 project to test its own river energy devices at scale.

The Limerick Post has much more on the story HERE.

Published in Power From the Sea

OpenHydro, the Irish based tidal energy company and part of DCNS Energies, has appointed Mr Patrick Gougeon as their new Chief Executive Officer. The appointment signals the company’s ongoing drive towards commercialisation of its tidal technology and follows the launch of DCNS Energies, a subsidiary of the DCNS Group which recently secured €100m in investment.

Mr Gougeon joined OpenHydro at the start of January 2017, having previously held the position of CEO of Colibrys, a high-technology industrial company based in Switzerland. He is an engineer from the French Ecole Centrale de Lille and holds an MBA from the HEC School of Management in Paris.

With over twenty years’ experience in delivering global technological projects and transforming organizations in the industrial sector, Mr Gougeon’s senior management career to date has encompassed roles including consultancy in strategy and organisation in McKinsey & Company, as well as change management, international business development, industrial and program management as a successful executive in the Thales and Safran groups.

Thierry Kalaquin, Senior Vice President of Energies at DCNS, said: “We are delighted to be welcoming Patrick to this role, following a successful year in 2016, which saw us deliver significant tidal technology development. We now look forward to moving towards a fully commercial tidal energy solution and servicing our global portfolio of projects.”

Operating out of OpenHydro’s Dublin offices and its Technical Centre in Greenore, Co. Louth, Mr Gougeon heads up a business that has strong plans to expand both locally and internationally.
Commenting on his appointment, Patrick Gougeon said: “I am really looking forward to taking up the challenge to lead OpenHydro’ s team during this exciting phase of its’ evolution. My immediate focus is to ensure that we are well placed for the next stage of growth and opportunities that lie ahead, with the right people, organization, technology and partners in place.”

Published in Power From the Sea
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James Ives, CEO at tidal energy company OpenHydro will speaking tomorrow at the Ocean Energy Europe Conference being held this week in Croke Park in Dublin. Ives will tell how the Irish marine renewable firm is to be the global leader in tidal solutions, profitably delivering economic marine renewable energy.

The Department of Communications says that €4.5m. will be allocated to ocean energy research in Ireland under Budget provisions next year. Total allocation for energy efficiency and renewable energy onshore and offshore next year is €68m. €9 million is being provided for geoscience initiatives including the INFOMAR and TELLUS programmes, which will support expanded geoscience research in Ireland’s offshore and onshore.

OpenHydro, a DCNS company, based in Ireland, is a technology business that designs and manufactures marine turbines to generate renewable energy from tidal streams. The company's vision is to deploy farms of tidal turbines under the world's oceans - silently and invisibly generating electricity at no cost to the environment. OpenHydro's technology enables the ocean's immense energy to be harnessed for the benefit of all. The electricity produced is completely renewable since it relies on tides that are created by the gravitational effect of the sun and moon. Through this innovative technology, OpenHydro will extract energy from the oceans in an economically viable and environmentally sensitive manner.

OpenHydro has developed the innovative Open-Centre Turbine technology which is a shrouded, horizontal-axis turbine. Simplicity is the key advantage of this technology: manufactured from a small number of components and with only one single moving part (the rotor). There is no need for oils, seals or a gearbox and this not only reduces the requirement for maintenance but ensures reliable performance in the harsh environment that is the World’s oceans. The turbines, each supported on a subsea structure, are placed directly onto the seabed, deep enough so as not to pose a hazard to shipping traffic overhead and the standard OpenHydro product has a diameter of 16m and is rated at 2MW. OpenHydro has also developed a patented method to install the Open-Centre Turbines, allowing all deployments to be completed in a single tidal cycle; less than 6 hours.

OpenHydro is at the fore-front of the tidal industry, with nearly one gigawatt of development in progress across multiple sites in Europe and North America. 

Published in Power From the Sea
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#SeaPower - What's been described as the world's largest planned tidal energy scheme has been given the green light by its financiers, with construction set to begin off the northern Scottish coast in the new year, as The Guardian reports.

Previously detailed last month on Afloat.ie, the MeyGen project – comprising 269 turbines on the seabed off Caithness in the far north of mainland Scotland – will see onshore construction get under way next month after developers Atlantis Resources satisfied the conditions to draw down funds from The Crown Estate of Scottish Enterprise.

MeyGen aims to harness the strong currents at the Ness of Quoys in Pentland Firth to generate energy at levels "on a part with wind turbines" but hidden from view beneath the waves - with the first power from the sea to be delivered to Britain's national grid by 2016.

Published in Power From the Sea

#PowerFromTheSea - The next big renewable energy turbine farm could be underwater off the coast of Scotland, as MailOnline reports.

Scottish firm MayGen has big plans to install a £51 million (€65.2 million) underwater turbine project to harness the powerful currents of their country's coastal waters.

This new project, earmarked for Pentland Firth at Caithness in the far north of mainland Scotland, follows separate plans to install the world's largest tidal power facility in the Sound of Islay.

MayGen - which has just won an award for its parent company Atlantis Resources for its "significant contribution" to the marine renewables industry – says its state-of-the-art technology is "on a par with wind turbines" in terms of productivity, but would be hidden from the view of those who find the larger land-based wind farms unsightly.

The Pentland Firth project will be the new design's proving ground, with hopes that it will generate power for nearly half a million homes upon completion in 2020.

MailOnline has more on the story HERE.

Published in Power From the Sea

#POWER FROM THE SEA - Marine-based renewable energy projects could be introduced without a damaging impact on marine wildlife, according to a new briefing paper from Friends of the Earth.

Business Green reports on the paper from the environmental campaign group, written by marine ecologist Martin Attrill of Plymouth University's Marine Institute, which draws together research on the biodiversity impact of offshore wave energy, tidal energy and wind power schemes.

Attrill found that the deployment of sea energy arrays could ultimately benefit many marine species by reducing the effects of fishing activity, and even acting as reefs to attract new sea life.

He cites the example of a grey seal colony in Strangford Lough that has steered clear of a nearby tidal turbine over the three years of its operation in the lough.

However, Business Green says the report makes clear that the deployment of such projects "must be done sensitively", noting that any negative impact on biodiversity "would be significantly lower than the damage done to marine wildlife by rising sea levels caused by climate change".

Business Green has more on the story HERE.

Published in Power From the Sea

#POWER FROM THE SEA - A €9 million Europe-wide wave energy trial programme is one of the key elements of a new Government programme designed to transform Ireland as a maritime nation.

According to The Irish Times, University College Cork's Hydraulics and Maritime Research Centre will run testing of wave energy, tidal energy and offshore wind energy devices across a network of sites in 12 European countries participating in the new marine renewables infrastructure network Marinet.

Irish test sites in the network include the national ocean test facility in Cork and centres operated by the Sustainable Energy Authority of Ireland (SEAI) at Galway Bay and Belmullet.

The UCC centre also forms part of the new Irish Maritime and Energy Resource Cluster (IMERC), launched last Friday by Taoiseach Enda Kenny.

The cluster comprises UCC, the Irish Naval Service, Cork Institute of Technology and the National Maritime College of Ireland with the initial aim of creating 70 new research jobs by 2014 in the areas of wave energy, green shipping and sustainability of ocean resources.

IMERC director Dr Val Cummins said: “The aim of IMERC is to promote Ireland as a world-renowned research and development location that will unlock Ireland’s maritime and energy potential."

The Irish Times has more on the story HERE.

Published in Power From the Sea
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Port of Cork Information

The Port of Cork is the key seaport in the south of Ireland and is one of only two Irish ports which service the requirements of all six shipping modes i.e., Lift-on Lift-off, Roll-on Roll-off, Liquid Bulk, Dry Bulk, Break Bulk and Cruise. Due to its favourable location on the south coast of Ireland and its modern deep-water facilities, the Port of Cork is ideally positioned for additional European trading as well as for yet unexploited direct deep-sea shipping services.

The Port of Cork is investing €80 million in a container terminal development in Ringaskiddy. The Cork Container Terminal will initially offer a 360-metre quay with 13-metre depth alongside and will enable larger ships to berth in the port. The development also includes the construction of a 13.5-hectare terminal and associated buildings as well as two ship to shore gantry cranes and container handling equipment.

The development of new container handling facilities at Ringaskiddy was identified in the Port of Cork’s Strategic Development Plan in 2010. It will accommodate current and future container shipping which can be serviced by modern and efficient cargo handling equipment with innovative terminal operating and vehicle booking systems. The Port of Cork anticipates that Cork Container Terminal will be operational in 2020.

The Port of Cork is the key seaport in the south of Ireland and is one of just two Irish ports which service the requirements of all shipping modes.

The Port of Cork also controls Bantry Bay Port Company and employs 150 people across all locations.

A European Designated Core Port and a Tier 1 Port of National Significance, Port of Cork’s reputation for quality service, including prompt and efficient vessel turnaround as well as the company’s investment in future growth, ensures its position as a vital link in the global supply chain.

The port has made impressive strides in recent decades, most recently with the construction of the new €80m Cork Container Terminal in Ringaskiddy which will facilitate the natural progression of the move from a river port to a deepwater port in order to future proof the Port
of Cork. This state-of-the-art terminal which will open in 2020 will be capable of berthing the largest container ships currently calling to Ireland.

The Port of Cork Company is a commercial semi-state company responsible for the commercial running of the harbour as well as responsibility for navigation and berthage in the port.  The Port is the main port serving the South of Ireland, County Cork and Cork City. 

Types of Shipping Using Port of Cork

The Port offers all six shipping modes from Lift-on Lift-off, Roll-on Roll-off, Liquid Bulk, Dry Bulk, Break Bulk and Cruise liner traffic.

Port of Cork Growth

The port has made impressive strides in recent decades. Since 2000, the Port of Cork has invested €72 million in improving Port infrastructure and facilities. Due to its favourable location and its modern deepwater facilities, the Port is ideally positioned for additional European trading as well as for yet unexploited direct deep-sea shipping services. A well-developed road infrastructure eases the flow of traffic from and to the port. The Port of Cork’s growing reputation for quality service, including prompt and efficient vessel turnaround, ensures its position as a vital link in the global supply chain. The Port of Cork Company turnover in 2018 amounted to €35.4 million, an increase of €3.9 million from €31.5 million in 2017. The combined traffic of both the Ports of Cork and Bantry increased to 10.66 million tonnes in 2018 up from 10.3 million tonnes in 2017.

History of Port of Cork

Famous at the last port of call of the Titanic, these medieval navigation and port facilities of the city and harbour were historically managed by the Cork Harbour Commissioners. Founded in 1814, the Cork Harbour Commissioners moved to the Custom House in 1904.  Following the implementation of the 1996 Harbours Act, by March 1997 all assets of the Commissioners were transferred to the Port of Cork Company.

Commercial Traffic at Port of Cork

Vessels up to 90,000 tonnes deadweight (DWT) are capable of coming through entrance to Cork Harbour. As the shipping channels get shallower the farther inland one travels, access becomes constricted, and only vessels up to 60,000 DWT can sail above Cobh. The Port of Cork provides pilotage and towage facilities for vessels entering Cork Harbour. All vessels accessing the quays in Cork City must be piloted and all vessels exceeding 130 metres in length must be piloted once they pass within 2.5 nautical miles (4.6 km) of the harbour entrance.

Berthing Facilities in Cork Harbour

The Port of Cork has berthing facilities at Cork City, Tivoli, Cobh and Ringaskiddy. The facilities in Cork City are primarily used for grain and oil transport. Tivoli provides container handling, facilities for oil, livestock and ore and a roll on-roll off (Ro-Ro) ramp. Prior to the opening of Ringaskiddy Ferry Port, car ferries sailed from here; now, the Ro-Ro ramp is used by companies importing cars into Ireland. In addition to the ferry terminal, Ringaskiddy has a deep water port.

Port of Cork Development Plans

2020 will be a significant year for the Port of Cork as it prepares to complete and open the €86 million Cork Container Terminal development in Ringaskiddy.

Once operational the new terminal will enable the port to handle up to 450,000 TEU per annum. Port of Cork already possess significant natural depth in Cork harbour, and the work in Ringaskiddy Port will enable the Port of Cork to accommodate vessels of 5500 to 6000 TEU, which will provide a great deal of additional potential for increasing container traffic.

It follows a previous plan hatched in 2006 as the port operated at full capacity the Port drew up plans for a new container facility at Ringaskiddy. This was the subject of major objections and after an Oral Planning Hearing was held in 2008 the Irish planning board Bord Pleanala rejected the plan due to inadequate rail and road links at the location.  

Further notable sustainability projects also include:

  • The Port of Cork have invested in 2 x STS cranes – Type single lift, Model P (148) L, (WS) Super. These cranes contain the most modern and energy-efficient control and monitoring systems currently available on the market and include an LED floodlight system equipped with software to facilitate remote diagnostics, a Crane Management System (CMS) and an energy chain supply on both cranes replacing the previous preferred festoon cabling installation.
  • The Port of Cork has installed High Mast Lighting Voltage Control Units at its two main cargo handling locations – Tivoli Industrial & Dock Estate and Ringaskiddy Deep-water & Ferry Terminals. This investment has led to more efficient energy use and reduced risk of light pollution. The lights can also be controlled remotely.
  • The Port of Cork’s largest electrical consumer at Tivoli Container Terminal is the handling and storage of refrigerated containers. Local data loggers were used to assess energy consumption. This provided timely intervention regarding Power Factor Correction Bank efficiency on our STS (Ship to Shore) Cranes and Substations, allowing for reduced mains demand and reducing wattless energy losses along with excess charges. The information gathered has helped us to design and build a reefer storage facility with energy management and remote monitoring included.

Bantry Port

In 2017 Bantry Bay Port Company completed a significant investment of €8.5 million in the Bantry Inner Harbour development. The development consisted of a leisure marina, widening of the town pier, dredging of the inner harbour and creation of a foreshore amenity space.

Port of Cork Cruise Liner Traffic

2019 was a record cruise season for the Port of Cork with 100 cruise liners visiting. In total over 243,000 passengers and crew visited the region with many passengers visiting Cork for the first time.

Also in 2019, the Port of Cork's Cruise line berth in Cobh was recognised as one of the best cruise destinations in the world, winning in the Top-Rated British Isles & Western Europe Cruise Destination category. 

There has been an increase in cruise ship visits to Cork Harbour in the early 21st century, with 53 such ships visiting the port in 2011, increasing to approximately 100 cruise ship visits by 2019.

These cruise ships berth at the Port of Cork's deepwater quay in Cobh, which is Ireland's only dedicated berth for cruise ships.

Passenger Ferries

Operating since the late 1970s, Brittany Ferries runs a ferry service to Roscoff in France. This operates between April and November from the Ro-Ro facilities at Ringaskiddy. Previous ferry services ran to Swansea in Wales and Santander in Spain. The former, the Swansea Cork ferry, ran initially between 1987 and 2006 and also briefly between 2010 and 2012.

The latter, a Brittany Ferries Cork–Santander service, started in 2018 but was cancelled in early 2020.

Marine Leisure

The Port of Cork has a strategy that aims to promote the harbour also as a leisure amenity. Cork’s superb natural harbour is a great place to enjoy all types of marine leisure pursuits. With lots of sailing and rowing clubs dotted throughout the harbour, excellent fishing and picturesque harbour-side paths for walking, running or cycling, there is something for everyone to enjoy in and around Cork harbour. The Port is actively involved with the promotion of Cork Harbour's annual Festival. The oldest sailing club in the world, founded in 1720, is the Royal Cork Yacht Club is located at Crosshaven in the harbour, proof positive, says the Port, that the people of Cork, and its visitors, have been enjoying this vast natural leisure resource for centuries. 

Port of Cork Executives

  • Chairman: John Mullins
  • Chief Executive: Brendan Keating
  • Secretary/Chief Finance Officer: Donal Crowley
  • Harbour Master and Chief Operations Officer: Capt. Paul O'Regan
  • Port Engineering Manager: Henry Kingston
  • Chief Commercial Officer: Conor Mowlds
  • Head of Human Resources: Peter O'Shaughnessy