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Wind Power By Country
The worldwide total cumulative installed electricity generation capacity from wind power has increased rapidly since the start of the third millennium, and as of the end of 2020, it amounts to 733 GW. Since 2010, more than half of all new wind power was added outside the traditional markets of Europe and North America, mainly driven by the continuing boom in China and India. At the end of 2015, China had 145 GW of wind power installed. In 2015, China installed close to half the world's added wind power capacity. Wind power is used on a commercial basis in more than half of all the countries of the world. By 2020, 56% wind power penetration was achieved in Denmark, 40% in Uruguay, 36% in Lithuania, 35% in Ireland, 24% in the UK, 23% in Portugal and in Germany, 20% in Spain, 18% in Greece, 16% in Sweden, 15% (avg) in the EU, 8% in the US, and 6% in China. In November 2018, wind power generation in Scotland was higher than the country's electricity consumption during the mont ...
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Share Of Electricity Production From Wind
Share may refer to: * Share, to make joint use of a resource (such as food, money, or space); see Sharing * Share (finance), a stock or other financial security (such as a mutual fund) * Share, Kwara, a town and LGA in Kwara State, Nigeria Share may also refer to: Arts, entertainment, and media * ''Share'' (2015 film), a short drama film * ''Share'' (2019 film), a feature drama film * ''Share'' (newspaper), a newspaper in Toronto, Canada * Ratings share, percentage of television sets in use tuned to a program, according to the Nielsen Ratings Computing * share (command), a shell command * SHARE (computing), a user group for IBM mainframe computers * Share (P2P), a Japanese P2P computer program, the successor to Winny * Share, a software service of Acrobat.com used for sending files * File sharing * Network share, a file storage area that is available over a computer network * Share icon, a user interface icon intended to convey performing a share action * SHARE Operating Sy ...
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Wind Power In Italy
Wind power in Italy, at the end of 2015, consisted of more than 1,847 wind turbines with a total installed capacity of 8,958 megawatts. Wind power contributed 5.4% of Italy electricity generation in 2015 (14,589  GWh). Italy is ranked as the world's tenth producer of wind power as of the end of 2016. Prospects for Italian wind energy beyond 2020 were positive, with several projects planned to go live before 2030. In 2019, Italy generated 20,054 GWh of electricity from wind power, equal to 7.1% of the total electricity generation. Overview In 2001, the European Commission issued its Directive on Electricity Production from Renewable Energy Sources. The Directive set a goal for Italy to obtain at least 25% of its electricity from renewables by 2010. The 1999 Italian ‘White Book’ targeted to install 2,500 MW of wind power capacity by 2010; Italy exceeded this in 2007. The Italian government targeted 12,000 MW by 2020. Given that Italy's recent growth in wind powe ...
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Wind Power In Greece
Wind is the natural movement of air or other gases relative to a planet's surface. Winds occur on a range of scales, from thunderstorm flows lasting tens of minutes, to local breezes generated by heating of land surfaces and lasting a few hours, to global winds resulting from the difference in absorption of solar energy between the climate zones on Earth. The two main causes of large-scale atmospheric circulation are the differential heating between the equator and the poles, and the rotation of the planet (Coriolis effect). Within the tropics and subtropics, thermal low circulations over terrain and high plateaus can drive monsoon circulations. In coastal areas the sea breeze/land breeze cycle can define local winds; in areas that have variable terrain, mountain and valley breezes can prevail. Winds are commonly classified by their spatial scale, their speed and direction, the forces that cause them, the regions in which they occur, and their effect. Winds have various as ...
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Wind Power In Vietnam
Wind is the natural movement of air or other gases relative to a planet's surface. Winds occur on a range of scales, from thunderstorm flows lasting tens of minutes, to local breezes generated by heating of land surfaces and lasting a few hours, to global winds resulting from the difference in absorption of solar energy between the climate zones on Earth. The two main causes of large-scale atmospheric circulation are the differential heating between the equator and the poles, and the rotation of the planet (Coriolis effect). Within the tropics and subtropics, thermal low circulations over terrain and high plateaus can drive monsoon circulations. In coastal areas the sea breeze/land breeze cycle can define local winds; in areas that have variable terrain, mountain and valley breezes can prevail. Winds are commonly classified by their spatial scale, their speed and direction, the forces that cause them, the regions in which they occur, and their effect. Winds have various as ...
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Wind Power In Japan
In Electricity sector in Japan, Japan's electricity sector, wind power generates a small proportion of the country's electricity. It has been estimated that Japan has the potential for 144 gigawatts (GW) for onshore wind and 608 GW of offshore wind capacity. As of 2020, the country had a total installed capacity of 4.2 GW. As of 2018, government targets for wind power deployment were relatively low when compared to other countries, at 1.7% of electricity production by 2030. In December 2020, the Japanese government announced plans to install up to 45 GW of offshore wind power by 2040. Statistics Government regulation and incentives , the feed-in tariff per kWh are 21 yen for onshore and 36 yen for offshore. In April 2019 the Renewable Sea Area Utilization Law came into force. The Act is expected to promote offshore wind power projects by providing for long-term use of certain sea areas for offshore wind power projects based on a bidding process. In 2020, a new feed-i ...
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Norwegian Water Resources And Energy Directorate
The Norwegian Water Resources and Energy Directorate ( no, Norges vassdrags- og energidirektorat or NVE) is a Norwegian government agency established in 1921. It is under the Ministry of Petroleum and Energy and regulates the country's water resources and energy supply. Its mandate includes contingency planning for floods, serving as a centre of expertise for hydrology, research and development, and increasing energy efficiency. It is a member of the Council of European Energy Regulators. The directorate is based in Oslo, and has regional offices in Hamar, Førde, Tønsberg, Trondheim and Narvik. It also establishes international contacts and undertakes work abroad in developing countries for the Norwegian Agency for Development Cooperation. , it has over 400 employees. Its website includes statistics on Norwegian energy consumption, production and prices and a database of Norwegian lakes and water catchment areas. The directorate holds administrative responsibility fo ...
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Wind Power In Norway
Wind is the natural movement of air or other gases relative to a planet's surface. Winds occur on a range of scales, from thunderstorm flows lasting tens of minutes, to local breezes generated by heating of land surfaces and lasting a few hours, to global winds resulting from the difference in absorption of solar energy between the climate zones on Earth. The two main causes of large-scale atmospheric circulation are the differential heating between the equator and the poles, and the rotation of the planet (Coriolis effect). Within the tropics and subtropics, thermal low circulations over terrain and high plateaus can drive monsoon circulations. In coastal areas the sea breeze/land breeze cycle can define local winds; in areas that have variable terrain, mountain and valley breezes can prevail. Winds are commonly classified by their spatial scale, their speed and direction, the forces that cause them, the regions in which they occur, and their effect. Winds have various as ...
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Wind Power In Belgium
Wind power in Belgium depends partially on regional governments (Brussels-Capital Region, Flemish Region, Walloon Region) and partially on the Belgian federal government. Wind energy producers in both the Flemish and Walloon regions get green certificates but not with the same conditions. By year end 2020 Belgium had 4,670 MW installed capacity of windpower, 2,408 MW of which were land based and 2,262 MW of offshore wind power producing a total of 10.8 TWh of electricity generation. The percentage of electricity demand met by wind grew to about 13.3% by end 2020. Wind turbines are installed offshore and onshore, mainly in the Flemish and in the Walloon Regions. Brussels-Capital Region is an urban area which is not particularly suited for large wind turbines. Smaller turbines more appropriate for urban environments are being studied but until today no technology is deemed sufficiently efficient. Installed capacity and generation Land based installed wind capacity grew to 2 ...
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Wind Power In Portugal
Wind power is a major source of electricity in Portugal. At the end of 2020, wind power capacity in Continental Portugal was 5,456 MW. In 2020, wind power represented 23.7% of total electricity generation. The record of wind power generation was achieved on November 22, 2019 with 103.1 GWh produced Regional trends Most of the Portuguese wind capacity is located in the north-northeast ''distritos''. Viseu is the ''distrito'' with the largest installed capacity, followed by Coimbra, Vila Real and Castelo Branco. Major wind farms The 240 MW Alto Minho Wind Farm in the Viana do Castelo district became fully operational in November, 2008 when Portugal's Economy Minister Manuel Pinho inaugurated it. At the time of completion it was Europe's largest on-shore wind farm. The wind farm began generating electricity in 2007, with production increasing as more wind turbines came online, reflecting the modular nature of wind farms. The wind farm consists of 68 Enercon E-82 2MW wind turb ...
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Wind Power In Poland
Wind power is a growing source of electricity in Poland. In 2019, wind was the second most important source of electricity produced in Poland, after coal, accounting for about 10% of the electricity production. History From 2012 to 2014 the Nowy Tomyśl Wind Turbines were the tallest wind turbines in the world with a pinnacle height of 210 metres. They are still the tallest wind turbines installed on lattice towers. the Polish government was still considering whether the first nuclear power plant should be built, but in May 2018 state-owned PGE Polska Grupa Energetyczna, who would have carried out any build, chose to invest in offshore wind power instead, targeting the build of 2.5 GW by 2030. In September 2020, the government announced a 130 billion zloty (£26.5 billion) plan to invest in offshore wind. The total wind power grid-connected capacity in Poland was 8,630.4 MW as of 30 April 2023. Capacity and production As of the end of 2015, total installed capacity was 5. ...
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Wind Power In Denmark
Denmark was a pioneer in developing commercial wind power during the 1970s, and today a substantial share of the wind turbines around the world are produced by Danish manufacturers such as Vestas—the world's largest wind-turbine manufacturer—along with many component suppliers. In Denmark's electricity sector wind power produced the equivalent of 47% of Denmark's total electricity consumption in 2019, an increase from 43.4% in 2017, 39% in 2014,Rasmussen, Jesper Nørskov.Vindmøller slog rekord i 2014" (in Danish) '' Energinet.dk'', 6 January 2015. Accessed: 6 January 2015. and 33% in 2013.Carsten Vittrup.2013 was a record-setting year for Danish wind power" (in Danish) '' Energinet.dk'', 15 January 2014. Accessed: 20 January 2014. In 2012, the Danish government adopted a plan to increase the share of electricity production from wind to 50% by 2020, and to 84% by 2035.Lindboe, page 3 Denmark had the 4th best energy architecture performance in the world in 2017 according to ...
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Wind Power In Mexico
Mexico is rapidly growing its production of wind power. In 2016, its installed capacity had reached 3,527 MW, increasing to 8,128 MW in 2020. In 2008, there were three wind farms in the country. The Eurus Wind Farm was the largest wind farm in Latin America. 18 of 27 wind farms construction projects were based in La Ventosa in the Isthmus of Tehuantepec in Oaxaca. According to the Mexican Wind Energy Association, Mexico was predicted to progress to rank twentieth worldwide in wind capacity by the end of 2012, and to produce four percent of the country's total electricity production. It also projected that the nation would have of wind generation capacity by 2020, and would be able to provide fifteen percent of Mexico's production. Brian Gardner, Economist Intelligence Unit's energy analyst, said, "With strong wind through the south, consistent sunlight in the north and a stable market, Mexico is well positioned for continued renewables growth". Wind power is in partial compe ...
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