{"id":228,"date":"2016-08-18T16:38:26","date_gmt":"2016-08-18T15:38:26","guid":{"rendered":"https:\/\/copyright.lboro.ac.uk\/research\/?p=228"},"modified":"2016-10-07T11:48:26","modified_gmt":"2016-10-07T10:48:26","slug":"britain-just-beginning-exploit-vast-resources-offshore-wind","status":"publish","type":"post","link":"https:\/\/blog.lboro.ac.uk\/research\/changing-environments-infrastructure\/britain-just-beginning-exploit-vast-resources-offshore-wind\/","title":{"rendered":"Britain is only just beginning to exploit its vast resources of offshore wind"},"content":{"rendered":"<p>In 1993, nine 300kW turbines were installed on the eastern pier at Blyth Harbour, near Newcastle on England\u2019s east coast. One can question whether this really counted as an offshore wind farm, but it was the UK\u2019s first tentative step towards building wind turbines at sea.<!--more--> Ten years later, the country\u2019s first truly offshore wind farm was built at North Hoyle in Liverpool Bay, 6km from the coast of North Wales. Thirty 2MW turbines were installed which could provide the electricity needs of around 40,000 homes.<\/p>\n<p>Fast forward to 2016 and the UK is the world\u2019s leading developer of offshore wind power with a total installed capacity of more than 5,000MW. The London Array, built in the outer reaches of the Thames Estuary, presently stands as the world\u2019s largest offshore wind farm which, with a capacity of 630MW, can rival a medium-sized gas-fired power station.<\/p>\n<figure class=\"align-right zoomable\">\n<div style=\"width: 247px\" class=\"wp-caption alignright\"><a href=\"https:\/\/62e528761d0685343e1c-f3d1b99a743ffa4142d9d7f1978d9686.ssl.cf2.rackcdn.com\/files\/134655\/area14mp\/image-20160818-12281-1j9fj2c.png\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/62e528761d0685343e1c-f3d1b99a743ffa4142d9d7f1978d9686.ssl.cf2.rackcdn.com\/files\/134655\/width237\/image-20160818-12281-1j9fj2c.png\" width=\"237\" height=\"280\" \/><\/a><p class=\"wp-caption-text\">Hornsea Two lies 100km off the Yorkshire coast. Most of the world\u2019s biggest offshore wind projects are in the North Sea. wiki, CC BY<\/p><\/div>\n<\/figure>\n<p>The proposed Hornsea Project Two offshore site, which <a href=\"https:\/\/www.theguardian.com\/environment\/2016\/aug\/16\/hornsea-project-two-windfarm-second-phase-grimsby\">the UK government has just approved<\/a>, will be larger still.<\/p>\n<p>More than 100km from the east coast, the project will, together with neighbouring Hornsea One, provide up to 3,000MW. It will dwarf any of the <a href=\"https:\/\/www.carbonbrief.org\/mapped-the-worlds-largest-offshore-windfarms\">more than 60 offshore windfarms<\/a> already built.<\/p>\n<p>These projects are getting bigger \u2013 and heading further and further offshore. Where will it end?<\/p>\n<h4>Why windfarms are going further out to sea<\/h4>\n<p>The drive to develop offshore wind power, despite its higher cost compared to onshore wind farms, has come from a politically driven perception that onshore wind power is too intrusive in a country which is relatively densely populated and values its landscape, as well as a recognition that winds offshore are stronger and more constant.<\/p>\n<p>A metric known as the \u201cload factor\u201d is used as a measure of how much a power plant produces on average (taking into account it is not at full output all the time) as a fraction of its maximum possible output. For onshore wind power this was 29.4% in 2015 and for <a href=\"https:\/\/www.gov.uk\/government\/uploads\/system\/uploads\/attachment_data\/file\/540933\/Chapter_5_web.pdf\">offshore it was 33.3%<\/a>. During a <a href=\"http:\/\/www.metoffice.gov.uk\/climate\/uk\/summaries\/2015\/december\">particularly windy<\/a> December 2015, the London Array\u2019s load factor was <a href=\"http:\/\/www.londonarray.com\/project\/renewable-energy-record-achieved-at-london-array\/\">78.9%<\/a> which is a level closer to that expected from a nuclear power station.<\/p>\n<p>These figures are testament to the higher and less variable winds that are seen offshore. As projects are built further from the coast, average wind speeds increase, along with the load factor.<\/p>\n<p>The UK is also largely surrounded by shallow waters, which also works in its favour. For instance, Dogger Bank, site of another <a href=\"http:\/\/www.bbc.co.uk\/news\/uk-england-tees-33794411\">huge proposed windfarm<\/a>, is more than 100km from the coast, yet the sea is less than 30m deep in much of the area (indeed \u201c<a href=\"http:\/\/www.telegraph.co.uk\/news\/earth\/environment\/archaeology\/11836627\/British-Atlantis-archaeologists-begin-exploring-lost-world-of-Doggerland.html\">Doggerland<\/a>\u201d was above the waterline during the last ice age, and was home to thousands of humans). This leaves much of Britain\u2019s offshore potential well within the reach of established and relatively cheap foundation designs such as piles driven into the sea bed.<\/p>\n<h4>Growing pains<\/h4>\n<p>How much offshore wind power could feasibly be installed in UK waters? The answer will be primarily driven by economics and constraints, which in turn depend on a number of physical and logistical factors.<\/p>\n<p>As we move to deeper water sites, those cheaper foundations are no longer feasible. Indeed, beyond depths of 80m, floating foundations are required. This technology, though common in the oil and gas industry, is still <a href=\"https:\/\/theconversation.com\/to-farm-the-deep-seas-offshore-power-must-look-beyond-traditional-windmills-36071\">at a prototype stage for offshore wind<\/a> and will inevitably increase costs.<\/p>\n<figure class=\"align-center \">\n<div style=\"width: 764px\" class=\"wp-caption alignnone\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/62e528761d0685343e1c-f3d1b99a743ffa4142d9d7f1978d9686.ssl.cf2.rackcdn.com\/files\/134662\/width754\/image-20160818-12312-956dhu.jpg\" width=\"754\" height=\"503\" \/><p class=\"wp-caption-text\">Specialist ships are needed to build offshore wind turbines. Nightman1965 \/ shutterstock<\/p><\/div>\n<\/figure>\n<p>Greater distances from shore make both construction and maintenance more expensive, as boats have further to travel from the relatively few large ports available to service huge offshore wind farms. In addition, the relatively small number of specialist vessels required for these tasks limits the rate and scale of construction.<\/p>\n<p>The UK has some of the busiest seas in the world both at the surface, criss-crossed by shipping lanes, and on the sea bed in the form of cables, pipelines, shipwrecks and unexploded ordnance. These factors to some extent restrict where offshore wind farms can be built. Beyond 80km or so from the coast, special high-voltage direct current (HVDC) grid connections are required to export the gigawatts of power that will be generated. Though this technology is relatively well established, it is currently more expensive than the more common alternating current (AC) cabling \u2013 and connecting multiple offshore wind farms to a common connection point offshore is challenging.<\/p>\n<p>Environmental factors have to be considered too. A site may be off limits if it may have an impact on a particular bird species. For example, one of the reasons that the proposed site at Shell Flats, off the coast of Blackpool, was abandoned was because of its potential impact on the <a href=\"https:\/\/www.thecrownestate.co.uk\/media\/6004\/ei-cowrie-predicting-the-displacement-of-common-scoter-melanitta-nigra-from-benthic-feeding-areas-due-to-offshore-windfarms-summary.pdf\">common scoter sea duck<\/a>.<\/p>\n<figure class=\"align-center \">\n<div style=\"width: 764px\" class=\"wp-caption alignnone\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/62e528761d0685343e1c-f3d1b99a743ffa4142d9d7f1978d9686.ssl.cf2.rackcdn.com\/files\/134660\/width754\/image-20160818-12318-yvx721.jpg\" width=\"754\" height=\"503\" \/><p class=\"wp-caption-text\">Offshore windfarm? Not in my backyard. Erni \/ shutterstock<\/p><\/div>\n<\/figure>\n<p>The number of turbines that can be installed in a given area is also limited by aerodynamics: if turbines are too close, those downstream have to work with reduced wind speeds and increased turbulence. The former reduces the power available and the latter increases fatigue and reduces turbine lifetime.<\/p>\n<p>Taking all of these factors into account, a <a href=\"http:\/\/www.sciencedirect.com\/science\/article\/pii\/S0960148115303001\">recent study of the UK\u2019s offshore wind energy potential<\/a> has suggested that the total amount of economically feasible installed capacity offshore might be up to 675GW. This could provide more than six times the UK\u2019s present national electricity demand. Capacity is currently just 5GW so, in other words, the UK has still exploited less than 1% of its offshore wind potential. In the unlikely event that this amount of offshore wind power was built, it would make the UK a major exporter of renewable energy to continental Europe.<\/p>\n<p>Where next for UK offshore wind power? The study which reached the 675GW figure assumed a <a href=\"http:\/\/www.renewable-energy-advisors.com\/learn-more-2\/levelized-cost-of-electricity\/\">levelised cost of energy<\/a> (LCOE), which factors in construction and maintenance costs, of up to \u00a3120\/MWh. By 2020, the government wants to get costs down to \u00a3100\/MWh. A number of the developers in British waters are <a href=\"http:\/\/www.windpowermonthly.com\/article\/1403506\/windeconomics-offshore-industry-aims-%E2%82%AC80-mwh-2025\">bullish about such reductions<\/a> and by 2025, they expect costs of \u00a370\/MWh, well below the <a href=\"https:\/\/theconversation.com\/hinkley-point-c-delay-how-to-exploit-this-attack-of-common-sense-in-energy-policy-63293\">strike price of \u00a392.50\/MWh<\/a> agreed for the Hinckley Point C nuclear power station which is not expected to come on stream until at least 2023.<\/p>\n<p>However, there are challenges ahead. Even if operational improvements and more efficient designs do manage to keep costs down, there remains the question of how to integrate a variable form of power generation into the UK grid. This will be achieved by more advanced controlled strategies for offshore wind farms, greater network interconnectivity with European neighbours, smart and flexible demand-side management technology and ultimately cost-effective energy storage.<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/counter.theconversation.edu.au\/content\/64134\/count.gif\" alt=\"The Conversation\" width=\"1\" height=\"1\" \/><\/p>\n<p><a href=\"http:\/\/www.lboro.ac.uk\/research\/crest\/people\/academic\/watson-simon.html\">Simon Watson<\/a>, Professor of Wind Energy, Centre for Renewable Energy Systems Technology (CREST), <em><a href=\"http:\/\/theconversation.com\/institutions\/loughborough-university-1336\">Loughborough University<\/a><\/em><\/p>\n<p>This article was originally published on <a href=\"http:\/\/theconversation.com\">The Conversation<\/a>. Read the <a href=\"https:\/\/theconversation.com\/britain-is-only-just-beginning-to-exploit-its-vast-resources-of-offshore-wind-64134\">original article<\/a>.<\/p>\n<!-- AddThis Advanced Settings generic via filter on the_content --><!-- AddThis Share Buttons generic via filter on the_content -->","protected":false},"excerpt":{"rendered":"<p>In 1993, nine 300kW turbines were installed on the eastern pier at Blyth Harbour, near Newcastle on England\u2019s east coast. One can question whether this really counted as an offshore wind farm, but it was the UK\u2019s first tentative step towards building wind turbines at sea.<!-- AddThis Advanced Settings generic via filter on get_the_excerpt --><!-- AddThis Share Buttons generic via filter on get_the_excerpt --><\/p>\n","protected":false},"author":108,"featured_media":243,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_exactmetrics_skip_tracking":false,"_exactmetrics_sitenote_active":false,"_exactmetrics_sitenote_note":"","_exactmetrics_sitenote_category":0,"footnotes":"","_links_to":"","_links_to_target":""},"categories":[3,6],"tags":[],"class_list":["post-228","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-changing-environments-infrastructure","category-energy"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.3 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ 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