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Displaying items by tag: Floating Wind

Oceanographers at Bangor University in Wales are calling for research into the environmental impact of turbulence caused by tidal flow past floating deep-water wind farms.

New research is needed to fully understand how locating varying types of wind turbines could affect not only the seabed, but the waters, and everything they contain, according to Dr Ben Lincoln of Bangor University.

Britain leads offshore wind energy production globally, with current power generation meeting one-third of the national demand (~10GW), and floating wind in deep shelf sea areas has been identified as a major route in the “net zero” goal.

A current target to produce 50GW by 2030 is an increase of 67% on the target set just 12 months ago.

However, Dr Lincoln and fellow researchers notes that offshore sites at a depth of over 50 metres are very different in nature to shallow coastal sites used so far.

They say that with an additional 20,000 wind turbines set to be built in British water, there is a need to ensure full awareness of the positive and negative effects their presence could have on the surrounding environment.

“Our shelf seas are fully mixed during winter, but during summer months the deeper regions stratify, with a warm surface layer overlying the cooler water below,”Dr Lincoln has said in a statement.

“ This triggers a phytoplankton bloom which can be seen from space and forms the base of the marine food chain, supporting fish, seabirds and whales,”he explains.

“ During summer months following the spring bloom, phytoplankton growth is supported by nutrients stirred up from below by turbulence associated with wind and tides. This turbulence also mixes oxygen down to the deep water, where it is required for other key biological processes,”he notes.

A diagram shows the potential impact of wind infrastructure mixing in stratified water. Flow past the floating foundations show a wider area of possible mixing between the surface and deep waters behind the tethered turbines sited in the deeper water and beyondA diagram shows the potential impact of wind infrastructure mixing in stratified water. Flow past the floating foundations show a wider area of possible mixing between the surface and deep waters behind the tethered turbines sited in the deeper water and beyond

“Environmental assessments for the shallow shelf seas have focused on wildlife using or living within the affected areas. The difference with the deeper seas is that the fundamental functioning of the seas themselves could be affected,” Lincoln says.

“Turbulent mixing determines the timing and rate of the food supply on which marine ecosystem and key species rely. Flow past deep water wind farms will introduce ‘anthropogenic’ or man-made turbulence, and increase mixing,”he says.

“ This fundamental change could lead to significant regional impacts, which must be assessed. However, impacts are not necessarily negative, with the potential to enhance productivity and offset the impact of increasing stratification due to climate change,”he says.

“There’s no doubt that this growth in renewable energy is essential to meet global 2050 net zero commitments,” he says.

More details are in a research paper: Anthropogenic Mixing in Seasonally Stratified Shelf Seas by Offshore Wind Farm Infrastructure, published in Frontiers.

Published in Power From the Sea

RTÉ News reports that the ESB has put before planners its proposal for an offshore wind turbine production base at its Moneypoint plant.

The pre-consultation on the planned facility, envisaged as part of the ESB’s multi-billion-euro Green Atlantic @ Moneypoint programme, will continue till June but formal plans are not expected to go before An Board Pleanála until 2024.

“Moneypoint will become a centre for the construction and deployment of floating wind,” a spokesperson said of the proposed facility, part of the ESB’s plans to evolve the West Clare station from coal power into a green energy hub.

The State-owned power company outlined benefits of the site such as its existing deepwater access, and its potential to “a significant number of direct jobs in the Mid-West region”.

Elsewhere, a Dutch offshore energy firm is proposing a £1 billion investment off Northern Ireland that could generate power for up to half a million homes.

As the Belfast Telegraph reports, SBM Offshore says it is investigation two sites in the North Channel for a series of “new generation floating wind turbines”.

“The two sites would generate a combined 400MW, representing 13% of Northern Ireland’s energy needs and up to 57% of domestic requirement,” project director Niamh Kenny said.

The Belfast Telegraph has more on the story HERE.

Published in Power From the Sea

The Kingstown to Queenstown Yacht Race or 'K2Q', previously the Fastnet 450

The Organising Authority ("OA") are ISORA & SCORA in association with The National Yacht Club & The Royal Cork Yacht Club.

The Kingstown to Queenstown Race (K2Q Race) is a 260-mile offshore race that will start in Dun Laoghaire (formerly Kingstown), around the famous Fastnet Rock and finish in Cork Harbour at Cobh (formerly Queenstown).

The  K2Q race follows from the successful inaugural 'Fastnet 450 Race' that ran in 2020 when Ireland was in the middle of the COVID Pandemic. It was run by the National Yacht Club, and the Royal cork Yacht Club were both celebrating significant anniversaries. The clubs combined forces to mark the 150th anniversary of the National Yacht Club and the 300th (Tricentenary) of the Royal Cork Yacht Club.

Of course, this race has some deeper roots. In 1860 the first-ever ocean yacht race on Irish Waters was held from Kingstown (now Dun Laoghaire) to Queenstown (now Cobh).

It is reported that the winner of the race was paid a prize of £15 at the time, and all competing boats got a bursary of 10/6 each. The first race winner was a Schooner Kingfisher owned by Cooper Penrose Esq. The race was held on July 14th 1860, and had sixteen boats racing.

In 2022, the winning boat will be awarded the first prize of a cheque for €15 mounted and framed and a Trophy provided by the Royal Cork Yacht Club, the oldest yacht club in the world.

The 2022 race will differ from the original course because it will be via the Fastnet Rock, so it is a c. 260m race, a race distance approved by the Royal Cornwall Yacht Club as an AZAB qualifier. 

A link to an Afloat article written by WM Nixon for some history on this original race is here.

The aim is to develop the race similarly to the Dun Laoghaire–Dingle Race that runs in alternate years. 

Fastnet 450 in 2020

The South Coast of Ireland Racing Association, in association with the National Yacht Club on Dublin Bay and the Royal Cork Yacht Club in Cork, staged the first edition of this race from Dun Laoghaire to Cork Harbour via the Fastnet Rock on August 22nd 2020.

The IRC race started in Dun Laoghaire on Saturday, August 22nd 2020. It passed the Muglin, Tuscar, Conningbeg and Fastnet Lighthouses to Starboard before returning to Cork Harbour and passing the Cork Buoy to Port, finishing when Roches's Point bears due East. The course was specifically designed to be of sufficient length to qualify skippers and crew for the RORC Fastnet Race 2021.

At A Glance – K2Q (Kingstown to Queenstown) Race 2024

The third edition of this 260-nautical mile race starts from the National Yacht Club on Dublin Bay on July 12th 2024 finishes in Cork Harbour.

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