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Siemens Gamesa Secures 110 MW Order for Cabo Leones Cluster in Chile

siemens-gamesa-cabo-leones-iii-wind-park_83241.jpg Image Source: Siemens Gamesa Cabo Leones III Wind Park

Siemens Gamesa Renewable Energy has secured a new order from Ibereólica Renovables, a Spanish Independent Power Producer, to supply 110-MW capacity for the second phase of Cabo Leones III wind park, in Chile. The company will deliver 22 of its SG 5.0-145 wind turbines and will also operate and maintain them for 10 years. With this order, Siemens Gamesa becomes the supplier-of-choice for the entire Cabo Leones cluster, which totals 598.8 MW and is located in Chile’s Atacama Desert. This amounts to 1.5 million tons of carbon emissions avoided, the equivalent of taking nearly 988,000 diesel vehicles off the road annually or growing 24 million trees. The complex will feature a wide range of Siemens Gamesa technologies spanning from 2-MW turbines to the latest Siemens Gamesa 4.X platform.

Chile’s National Energy Policy 2050 sets ambitious targets to support the country’s transition to clean energy sources. Already 25% of the country’s installed capacity comes from renewable energy sources, of which 9% is from wind power.

Siemens Gamesa has steadily made inroads in Chile’s wind energy market to reinforce its position as a strong leading player. From 2014, when Siemens Gamesa installed its first wind turbine in the country, the company’s installed capacity has grown to 480 MW. The company has come a long way since then and secured orders worth 700 MW in just the last 12 months.

The Cabo Leones III farm is scheduled to start operations in June 2021, and Siemens Gamesa will complete the delivery of its turbines by December 2020.

Source : STRATEGIC RESEARCH INSTITUTE
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Fugro aan de slag voor Britse kust

(ABM FN-Dow Jones) Fugro is begonnen met bodemonderzoek voor een windmolenpark voor de Britse kust. Dat maakte de bodemonderzoeker dinsdagmiddag bekend.

Het betreft een opdracht van Scottish Power Renewables met een waarde van ongeveer 55 miljoen Britse pond. "Een significant en uitdagend project", aldus de bodemonderzoeker.

De werkzaamheden zullen eind 2021 klaar moeten zijn.

Uiteindelijk moet er een windmolenpark komen met 263 windmolens en een capaciteit van 3,1 Gigawatt, goed voor 2,7 miljoen huishoudens.

Door: ABM Financial News.
info@abmfn.nl
Redactie: +31(0)20 26 28 999

© Copyright ABM Financial News B.V. All rights reserved.
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Shell en Eneco winnen tender windmolenpark Hollandse Kust

FONDS KOERS VERSCHIL VERSCHIL % BEURS
Royal Dutch Shell -A-
13,71 -0,054 -0,39 % Euronext Amsterdam
Royal Dutch Shell -A-
£ 12,27 -0,015 -0,12 % London Stock Exchange

(ABM FN-Dow Jones) Royal Dutch Shell en Eneco hebben samen de tender voor het windmolenpark Hollandse Kust binnengesleept. Dit maakte Shell woensdag bekend.

Het park moet in 2023 operationeel zijn met een capaciteit van 759 Megawatt. Daarmee zouden meer dan 1 miljoen Nederlandse huishoudens van groene elektriciteit moeten worden voorzien.

Hollandse Kust zal circa 18,5 kilometer voor de kust van Egmond aan Zee komen te liggen.

Door: ABM Financial News.
info@abmfn.nl
Redactie: +31(0)20 26 28 999

© Copyright ABM Financial News B.V. All rights reserved.
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Shell en Eneco bouwen weer een subsidieloos windpark in Noordzee

Gepubliceerd op 29 juli 2020 18:56 | Views: 1.627

DEN HAAG (AFN) - Shell en Eneco gaan samen het derde subsidieloze windpark in de Nederlandse Noordzee aanleggen en exploiteren. Dankzij de komst van dit park kan windenergie op zee in 2023 voorzien in ongeveer 16 procent van de totale Nederlandse elektriciteitsvraag. Daarmee wordt het doel voor windenergie op zee uit het Energieakkoord naar verwachting binnen het budget en de planning behaald, meldt de Nederlandse overheid.

Het windpark komt op 18,5 kilometer van de kust bij Egmond aan Zee te staan en gaat in totaal 759 megawatt aan vermogen leveren. Dit is genoeg om meer dan 1 miljoen huishoudens van groene stroom te voorzien. CrossWind, zoals het consortium van Shell en Eneco heet, zullen 69 windturbines plaatsen. Het merendeel van de molens, met rotordiameters van wel 200 meter, bevindt zich straks op meer dan 1 kilometer afstand van elkaar.

De bedrijven zijn al langer actief met windparken op zee. Het samenwerkingsverband Blauwwind, waar de twee ook bij betrokken zijn, kreeg in 2016 bijvoorbeeld de vergunning om aan de slag te gaan op kavels in het windenergiegebied Borssele. Dat windpark is nu in aanbouw. Hoeveel geld er met de projecten is gemoeid, is nu niet naar buiten gebracht.

De komende jaren worden nog meer windparken op zee afgerond en zal de hoeveelheid elektriciteit die zij leveren sterk toenemen. Volgens het ministerie van Economische Zaken bedraagt het totale vermogen van windparken op zee nu ongeveer 1 gigawatt. Aan het einde van het jaar zal dit bijna 2,5 keer zoveel zijn en 2023 moet dit vermogen toenemen tot 4,7 gigawatt. In 2030 zal het totale vermogen verder oplopen tot 11 gigawatt. Dat is zo’n 40 procent van de totale Nederlandse elektriciteitsvraag.
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Saipem Bags 3 Offshore Wind Contracts

Saipem has been awarded new offshore wind contracts, for projects currently under development off the coasts of England, Scotland and France, for a total value of over 90 million euros. Dogger Bank Offshore Wind Farms, a joint venture between Equinor and SSE Renewables, has awarded a contract to Saipem for the transportation and installation of two offshore High Voltage Direct Current platforms for the first two phases of the Dogger Bank project: Dogger Bank A and Dogger Bank B. Both platforms will have a capacity of 1.2 GW and will consist of a ca. 2,900-ton jacket and a ca. 8,500-ton topside. Dogger Bank will be the world’s biggest offshore wind farm when completed and is located over 130km off the North East coast of England. The project is the first to use HVDC technology in the UK’s offshore wind market.

Saipem has also been awarded an installation contract by Seaway 7 related to the Seagreen Offshore Wind Farm, a 1,075MW joint venture project between SSE Renewables (49%) and Total (51%) off the East coast of Scotland. The scope of work entails the installation of 114 foundations for an equivalent number of wind turbines.

Lastly, Saipem has been awarded a contract for the transportation and installation of the jacket and topside of the offshore substation at St-Brieuc offshore wind farm, located in Brittany, France, which is being developed by Ailes Marines, part of the Iberdrola group. All project management and engineering activities shall be executed by Saipem SA, Saipem’s French subsidiary established in Paris.

These offshore installation projects will be carried out by the crane vessel Saipem 7000.

Source : STRATEGIC RESEARCH INSTITUTE
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Van Oord Bags Contract to Construct Hollandse Kust (noord) Offshore Wind Farm

Following the announcement that CrossWind received the permit for the Hollandse Kust (noord) offshore wind farm, Van Oord is pleased to confirm that it has been contracted for the Balance of Plant scope. CrossWind is a joint venture between Shell and Eneco. As Balance of Plant contractor, Van Oord’s activities encompass the engineering, procurement, construction and installation of the foundations; inter array cables and transportation and installation of the wind turbines. Van Oord will deploy its offshore installation vessels Aeolus, MPI Adventure and MPI Resolution and cable-laying vessel Nexus.

Offshore wind is essential in achieving the energy transition in the Netherlands. In the 2030 Roadmap for offshore wind energy, the Dutch government states that more than 11 gigawatts of offshore wind farms will be built and connected to the mainland by 2030. Over the past years, Van Oord has played an important role in the development and construction of several Dutch offshore wind farms, such as Gemini Offshore Wind Park and offshore wind farm Borssele III & IV and site V. Hollandse Kust (noord) will have an installed capacity of 759 MW, generating at least 3.3 TWh per year. This is enough renewable power to supply more than 1 million Dutch households with green electricity. CrossWind plans to have the wind farm operational by 2023.

Source : STRATEGIC RESEARCH INSTITUTE
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MHI Vestas Confirms Full Power at Floating Wind Project in Continental Europe

MHI Vestas Offshore Wind confirmed that the final of three V164 8.4 MW turbines is now generating power to the Portuguese grid. The third and final V164-8.4 MW turbine installed on Principle Power’s semi-submersible WindFloat floating platform has now completed testing at the WindFloat Atlantic project site, and is generating clean, renewable wind power to the Portuguese grid. The three V164-8.4 MW turbines are the largest commercially-operating wind turbines installed offshore on floating platforms anywhere in the world.

The project site is located 20 km off the coast of Viana do Castelo in Portugal at a sea depth of 100 meters. The WindFloat Atlantic project has been developed by the Windplus consortium, made up of EDP Renewables, Engie, Repsol and Principle Power.

WindFloat Atlantic is the first floating offshore wind farm in continental Europe, and will deliver an installed capacity of 25 MW, enough to deliver clean electricity equivalent to the amount used by 60,000 consumers in one year.

MHI Vestas has also been selected as preferred supplier for the “Eoliennes flottantes du golfe du lion” project, being developed by a consortium including WindFloat Atlantic partners EDP Renewables and Engie. The EFGL project is anticipated to utilise three V164-10.0 MW turbines, also sitting atop Principle Power’s WindFloat platform.

About WindFloat Atlantic
Developer: WindPlus
Turbines: 3 x V164-8.4 MW turbines from MHI Vestas
Blade tip height: 190 meters
Foundation: WindFloat (floating, semi-submersible)
Foundation technology supplier: Principle Power, Inc.
Project Capacity: 25 MW
Location: Portugal, Viana do Castelo, Northern Region
Distance From Shore: 20 km
Sea Depth: 100 metres
Nominal Voltage: 66 kV
Noteworthy fact: Largest and most powerful wind turbines operating on a floating foundation

Source : STRATEGIC RESEARCH INSTITUTE
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De wind-energiegroep Nordex SE wil enkele van haar projecten verkopen aan het nutsbedrijf RWE.

Een verkoopprijs van EUR 402,5 miljoen werd in contanten overeengekomen, maakte het bedrijf op de SDax vrijdag na sluiting van de markt bekend.

De prijs van Nordex steeg 8,5 % nabeurs bij de makelaar Lang & Schwarz. (+97% YTD......)

Het gaat om om 2,6 gigawatt windparken, waarvan 1,8 gigawatt in Frankrijk en 0,1 gigawatt zonne-energie.

De werknemersvertegenwoordigers in Frankrijk en de lokale autoriteiten moeten nog akkoord gaan met de overeenkomst.

www.focus.de/finanzen/boerse/aktien/k...

Mevr. Susanne Klatten kan nu een nieuwe e-BMW kiezen ...:)
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East Anglia Reaches Major Milestone with Windfarm Completion

East Anglia has cemented its position as a major centre for renewable energy with the completion of the East Anglia ONE offshore windfarm, an incredible achievement, particularly during the COVID-19 pandemic. All 102 Siemens Gamesa offshore wind turbines – situated 43km off the Suffolk coast are now fully operational, with the capacity to produce 714MW of clean energy. Each year, the park will produce enough renewable energy to power the equivalent of more than 630,000 homes. Around 20 per cent of the turbine installation and around half the turbine connection work was completed during lockdown, with ScottishPower Renewables and its project partners transforming how they worked to get the job done. This included switching to a higher number of smaller vessels, creating crew ‘households’ who lived and worked together at all times, introducing new welfare protocols and minimising crew changes.

This comprehensive approach allowed the project to be completed on time, creating a source of vital green energy to keep homes, businesses and communities powered during the crisis and beyond. East Anglia ONE will now play a major part in contributing to the UK’s target of meeting Net Zero by 2050.

In addition to the significant impact the windfarm will have on the UK’s low carbon future, East Anglia ONE’s achievement and ambition will continue far beyond energy power. The site has already brought major benefits to the local economy, regional jobs market and wider UK supply chain.

ScottishPower Renewables co-invested GBP 5 million in Peel Ports Great Yarmouth to prepare it for construction and marshalling activity. Over the course of the project, more than half of the project’s supply chain has come from the UK market, exceeding the commitments made as part of its successful bid for Contract for Difference funding.

The two new apprentices will be based at East Anglia ONE’s state-of-the-art new operations and maintenance building at Hamilton Dock, Lowestoft; a key part of a GBP 25million investment made by ScottishPower Renewables into the port. The apprentice recruitment drive comes on the back of the offshore wind industry target announced in March to employ 3,000 new apprentices across the industry by 2030.

Source : STRATEGIC RESEARCH INSTITUTE
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CrossWind Wins Tender for Hollandse Kust (Noord) Wind Farm

The CrossWind consortium, a joint venture between Shell in the Netherlands and Eneco, has been awarded the tender for the subsidy-free offshore wind farm Hollandse Kust (noord). The wind farm will help to meet the objectives of the Dutch Climate Accord and the EU’s Green Deal. Both companyes have already taken their final investment decisions on the project. The consortium plans to have Hollandse Kust (noord) operational in 2023 with an installed capacity of 759 MW, generating at least 3.3 TWh per year. This is enough renewable power to supply more than 1 million Dutch households with green electricity. The wind farm will be located 18.5 kilometres off the coast of The Netherlands near the town of Egmond aan Zee.

Offshore wind projects produce intermittent electricity. Balancing these dips and peaks and integrating this electricity into the national energy system requires new technologies. That is why the offshore wind farm will include the following five technology demonstrations that could be implemented at full-scale in the future: a floating solar park; short-term battery storage; turbines that are optimally tuned to the network to minimise the negative ‘wake’-effects that wind turbines have on each other; ‘green hydrogen’ made by electrolysis as a further storage technique and the combination of these individual measures to ensure a continuous power supply regardless of the wind situation.

Working together is crucial for the transition to a cleaner energy system across Europe and within each country. For this reason, the CrossWind team intends to work closely with universities and scientific institutions to develop further technical innovations. We intend to share the lessons learned from developing this wind farm with a broad audience – varying from the academic world to the general public.

Source : STRATEGIC RESEARCH INSTITUTE
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Fugro Begins Extensive Site Characterisation for ScottishPower Renewables East Anglia Hub

Fugro has begun the geophysical survey phase of a large multidisciplinary site investigation contract worth around GBP 55 million for ScottishPower Renewables’ East Anglia Hub project. The phased site investigations are scheduled to finish at the end of 2021 and support the development of wind farms in the UK southern North Sea over an area of more than 800 square kilometers. The results from Fugro’s site characterisation will feed into SPR’s ground models for the East Anglia Hub and support seabed mobility assessment, foundation design and cable-route engineering.

Operating from dedicated geophysical survey vessels, the Fugro team began the UXO surveys in July; full coverage bathymetric surveys and sub-bottom profiler surveys across the site and export cable routes will follow. Data processing and reporting will be completed in Fugro’s UK and Netherlands offices.

Geotechnical investigation of the wind turbine locations will start later this summer and will comprise ultra-deep seabed cone penetration tests using Fugro’s innovative SEACALF Mk V DeepDrive CPT system, downhole and seismic CPTs, geotechnical sampling, and geophysical borehole logging. Shallow geotechnical testing and sampling will be performed along the export cable routes, while standard and advanced soil testing will take place at Fugro’s soil laboratory testing facility in Wallingford, UK.

SPR’s East Anglia Hub will eventually consist of 263 wind turbine generators capable of delivering a total installed capacity of up to 3.1 GW, enough to power up to 2.7 million homes.

Source : STRATEGIC RESEARCH INSTITUTE
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Global Offshore Wind Capacity will surge to over 234 GW by 2030

According to a new report from the Global Wind Energy Council, Global offshore wind capacity will surge to over 234 GW by 2030 from 29.1 GW at the end of 2019, led by exponential growth in the Asia-Pacific region and continued strong growth in Europe. The report finds that 2019 was the best year on record for offshore wind, with 6.1 GW of new capacity added globally, bringing total global cumulative installations to 29.1 GW. China remains in the number one spot for the second year in a row for new installations, installing a record 2.4 GW, followed by the UK at 1.8 GW and Germany at 1.1 GW. While Europe continues to be the leading region for offshore wind, countries in the Asia-Pacific region, such as Taiwan, Vietnam, Japan, and South Korea, as well as the US market are quickly picking up the pace and will be regions of significant growth in the next decade.

GWEC Market Intelligence forecasts that through 2030, more than 205 GW of new offshore wind capacity will be added globally, including at least 6.2 GW of floating offshore wind. This represents a 15 GW increase from the forecasts in GWEC Market Intelligence’s pre-COVID forecast, demonstrating the resilience of the sector to play a major role in powering both the energy transition and a green recovery.

The global offshore market has grown on average by 24 per cent each year since 2013. Europe remains the largest market for offshore wind as of the end of 2019, making up 75 per cent of total global installations. Europe will continue to be a leader in offshore wind, with an ambitious 450 GW goal by 2050 driven by installations in the UK, Netherlands, France, Germany, Denmark and Poland, with several other EU markets posting double-digit volumes.

North America currently has just 30 MW of offshore wind capacity in operation at the end of 2019, but deployment will accelerate in the coming years with 23 GW forecasted to be installed by 2030. The majority of this growth will come from the budding industry in the US, and we can expect to already see utility-scale projects coming online by 2024 in the country.

The report highlights increased activity level in the Asia-Pacific region thanks to increased national ambition, led by China where 52 GW of new offshore wind capacity is expected to be installed by 2030. Taiwan is set to become the second-largest offshore wind market in Asia after Mainland China, with a goal of 5.5 GW by 2025 and an additional 10 GW by 2035. Other markets in the region are also beginning to scale-up their offshore wind markets, with Vietnam, Japan and South Korea expected to install 5.2 GW, 7.2 GW and 12 GW of offshore wind capacity respectively.

Top 5 markets for new offshore installations in 2019
China – 2.4 GW
The UK – 1.8 GW
Germany – 1.1 GW
Denmark – 374 MW
Belgium – 370 MW

Top 5 markets for cumulative offshore installations in 2019
The UK – 9.7 GW
Germany – 7.5 GW
China – 6.8 GW
Denmark – 1.7 GW
Belgium – 1.6 GW

Top 5 markets forecasted for cumulative offshore wind installations by 2030
China – 58.8 GW
The UK – 40.3 GW
US – 22.6 GW
Germany – 20 GW
Netherlands – 11.4 GW

Source : STRATEGIC RESEARCH INSTITUTE
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Nieuwe windmolens: meer groene energie en beter voor vogels

Door nieuwe windparken en slimme innovaties groeit de hoeveelheid opgewekte windenergie snel. Dit zijn de windturbines van de toekomst.

01-07-2020

Misschien zien we in de toekomst steeds vaker windmolens met een verticale as. Foto: Wingardium Energy

In 2019 steeg wereldwijd de hoeveelheid geïnstalleerde windcapaciteit met maar liefst 19% procent tot 651 gigawatt, zo becijferde de Global Wind Energy Council (GWEC) in hun jaarlijkse rapport. Hoewel de windcapaciteit volgens de GWEC nog niet snel genoeg groeit om de doelen van Parijs te halen, bieden nieuwe ontwikkelingen hoop. Niet alleen komen er elk jaar veel windmolens bij, ook worden ze steeds efficiënter en goedkoper. Daarnaast werken wetenschappers en ontwerpers aan slimme opslagsystemen voor de opgewekte energie, en proberen ze de impact op vogels en zeeleven te verkleinen.

Nederland is bezig met een inhaalslag op het gebied van duurzame energie. En dat is hard nodig, want op dit moment is het percentage energie uit hernieuwbare bronnen het laagst van heel Europa. In 2019 kwam in ons land slechts 8,6% van de opgewekte energie uit duurzame bronnen, terwijl Nederland de doelstelling heeft om in 2020 op minimaal 14% uit te komen.

Nieuw windpark in Noordzee voor Nederlandse windenergie
Gelukkig worden er de komende jaren veel nieuwe Nederlandse windparken aangesloten op het energienet waardoor de doelstelling van 16% in 2023 wél binnen handbereik komt.

Zo bouwt Vattenfall momenteel het windpark Holland Kust Zuid, het grootste ongesubsidieerde offshore windpark ter wereld. De 140 windturbines leveren straks energie voor meer dan 2 miljoen Nederlandse huishoudens. In totaal komen er de komende jaren zes grote windparken op zee bij. De overheid wil dat uiteindelijk in 2030 minimaal 27% van alle gebruikte energie uit duurzame bronnen komt.

Bestaande en toekomstige windparken in de Noordzee. Afbeelding: Rijksoverheid

Naast het grootste ongesubsidieerde offshore windpark, bevindt ook de grootste én krachtigste windturbine ter wereld zich in ons land: de Haliade X. Deze kolos staat in de haven van Rotterdam. Met een bruto jaarlijkse opbrengst van 67 GWh zou één windturbine - onder ideale omstandigheden - ruim 16.000 huishoudens van energie kunnen voorzien! Daarbij moet wel worden opgemerkt dat de netto jaarlijkse opbrengst uiteindelijk wat lager uitvalt.

De grootste en krachtigste windturbine ter wereld staat in de haven van Rotterdam. Foto: GE

Windmolenpark wordt onderwaterparadijs

Onderzoeksleider van het project bij ECN.TNO Peter Eecen liet eerder aan Scientias weten dat zijn collega's bezig zijn technologie te ontwerpen om windparken op zee te combineren met kunstriffen en zeewierkwekerijen. Daarmee zou de impact op het zeeleven kunnen worden verkleind.

Dat is ook de inzet van het project De Rijke Noordzee: windparken omtoveren tot natuurparken onder water. Eerder schreven we al hoe dit unieke project met onder andere rifballen en oesterkooien de natuur versterkt. Ook kunnen windparken de bodem beschermen tegen schadelijke vormen van intensieve visserij. In onderstaande video wordt het project verder uitgelegd.

Naast het leven in de zee is er ook steeds meer aandacht voor de impact van windparken op het leven in de lucht. De ronddraaiende wieken van windturbines kunnen namelijk gevaarlijk zijn voor vogels. Om tijdens de energietransitie zowel vogels als het leven in de Noordzee te beschermen, hebben de overheid, energiebedrijven en natuur- en milieuorganisaties daarom begin 2020 het Akkoord voor de Noordzee gesloten.

Hierin is afgesproken om de hoeveelheid beschermde natuur in de Noordzee uit te breiden. Zo wil men kwetsbare soorten als haaien en zeevogels beter beschermen. In de beschermde vogelgebieden mogen helemaal geen windmolens worden geplaatst.

België komt met vogelvriendelijkere windmolens
Het beschermen van vogels was ook een van de redenen voor Ludo Loyens van het Belgische Wingardium Energy om energie op te wekken met Cyclone-Turbines. Deze windturbines hebben een verticale as waardoor ze niet alleen een hogere windkracht aankunnen, maar ook beter zichtbaar zijn voor vogels. De opgewekte energie kan worden gebruikt om elektrische auto's en fietsen op te laden, maar ook om met regenwater groene waterstof te produceren.

Daarmee kan de opgewekte energie direct lokaal worden opgeslagen, waardoor het elektriciteitsnetwerk kan worden ontlast. De slimme opslag van energie is dan ook een van de voorwaarden om de energietransitie te laten slagen.

Windturbines met een verticale as zijn beter zichtbaar voor vogels. Foto: Wingardium Energy

Ook de nieuwe windwatermolen van Hy-Gro, die binnenkort in de Wieringmeerpolder wordt gebouwd, zet de opgewekte energie direct om in waterstof. Door de elektrolyzer - het apparaat dat waterstof maakt van stroom en water - in de windturbine te integreren verwachten de initiatiefnemers een hoger rendement te behalen.

Je eigen windenergie opwekken
In de toekomst wordt windenergie niet alleen opgewekt op zee of op het platteland, maar ook midden in de stad. Als het aan de Britse studenten Yaseen Noorani en Nicolas Orellana ligt kunnen stadsbewoners binnenkort zelf windenergie opwekken met kleine windturbines.

Het unieke design zorgt ervoor dat ook wanneer de wind steeds van richting verandert - zoals vaak het geval is in de stad - deze effectief duurzame energie kan opwekken. Met hun uitvinding wonnen ze in 2018 de eerste prijs bij de James Dyson Awards. In onderstaande video vertellen ze over hun plannen.

www.voordewereldvanmorgen.nl/artikele...

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Energiereus Ørsted profiteert van hardere wind

Gepubliceerd op 12 augustus 2020 09:33 | Views: 170

KOPENHAGEN (AFN) - De Deense energiereus Ørsted heeft in de eerste helft van het jaar geprofiteerd van hardere wind. De opbrengsten uit windmolenparken gingen duidelijk omhoog, zo valt op te maken uit een handelsbericht.

Ørsted haalde concreet 17 procent meer omzet uit de parken. De totale opbrengtsen stegen met 11 procent op jaarbasis, naar 9,8 miljard Deense kroon. Dat is omgerekend zo'n 1,3 miljard euro. De winst daalde met 32 procent naar bijna 2,5 miljard Deense kroon. Het aandeel groene energie dat Ørsted produceert op de totale productie is op jaarbasis gestegen van 82 procent naar 88 procent.

Het bedrijf had in het tweede kwartaal last van een verminderde vraag uit vooral het Verenigd Koninkrijk als gevolg van de coronacrisis. Dat kostte Ørsted zo'n 150 miljoen Deense kroon. Ørsted past de verwachtingen voor heel 2020 niet aan met de kanttekening dat een verergering van de coronacrisis wel een grote impact kan hebben.
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Fugro aan de slag voor windmolenpark Hollandse Kust

(ABM FN-Dow Jones) Fugro kan aan de slag bij windmolenpark Hollandse Kust. Dit maakte de bodemonderzoeker donderdag bekend zonder financiële details te geven.

De opdracht voor geotechnisch onderzoek aan de locatie waar het windmolenpark moet verrijzen, werd verstrekt door het CrossWind consortium van Royal Dutch Shell en Eneco.

Het nieuwe park, dat 18,5 kilometer voor de kust bij Egmond aan Zee komt, moet in 2023 operationeel zijn.

Door: ABM Financial News.
info@abmfn.nl
Redactie: +31(0)20 26 28 999

© Copyright ABM Financial News B.V. All rights reserved.
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Jan De Nul Signs Contract with Dogger Bank Wind Farm

Dogger Bank Wind Farm and Jan De Nul Group announced the signing of the final contract for the transport and installation of the GE Haliade-X offshore wind turbines at Dogger Bank A and Dogger Bank B, 130 km off the Yorkshire coast, starting in 2023. Turbine delivery and installation at the first two phases of Dogger Bank Wind Farm will be the first assignment for the world’s largest Offshore Jack-Up Installation Vessel owned by Jan De Nul Group, the Voltaire.

The 3.6GW Dogger Bank Wind Farm, which is being delivered in the North Sea in three 1.2GW phases, is set to be the world’s largest offshore wind farm when complete and is a joint venture between SSE Renewables and Equinor. When complete, Dogger Bank will generate enough energy to power over 4.5 million homes every year – around 5% of the UK’s electricity needs.

Dogger Bank Wind Farm secured 3.6 GW of offshore wind contracts in the UK Government’s 2019 contracts for difference auctions. Record low prices were awarded for the three projects making up Dogger Bank Wind Farm: Dogger Bank A, Dogger Bank B and Dogger Bank C. Dogger Bank A and Dogger Bank B are now moving towards final investment decision, expected by the end of 2020. SSE Renewables is leading the development and construction phases of Dogger Bank Wind Farm and Equinor will lead on operations for its lifetime of at least 25 years, creating around 200 jobs in the North East.

This vessel, currently under construction, will have a lifting capacity of over 3,000 tonnes and will enter into service in 2022.

Source : STRATEGIC RESEARCH INSTITUTE
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Siemens Energy to supply HVDC Technology for BorWin5 offshore Wind Farm

OffshoreSiemens Energy is supplying the high voltage direct current power transmission technology for a further offshore connection in the German North Sea. A corresponding contract was just signed by the German-Dutch network operator TenneT and the BorWin5 Offshore Consortium, consisting of Siemens Energy and Dragados Offshore. In 2025, the platform BorWin epsilon, which is part of the BorWin5 project, will begin the low-loss transmission of electricity produced by the EnBW He Dreiht wind farm off the island of Borkum to the Garrel/Ost converter station around 230 kilometers distant. The transmission capacity of 900 megawatts is calculated to serve over 1.1 million households with electricity. The project is a further contribution toward decarbonizing Germany’s energy supply. BorWin5 marks the seventh HVDC offshore grid connection project undertaken by Siemens Energy in Germany with TenneT.

The scope of supply for Siemens Energy and its Spanish partner Dragados Offshore SA includes the turnkey construction and installation of the offshore platform in the North Sea and the converter station on land. The offshore converter station will convert the three-phase alternating current produced by the wind turbines into direct current with a voltage of 320 kilovoltsfor low-loss transmission to land. The shoreside converter station in Garrel/Ost will then convert the electricity back into three-phase alternating current for feeding into Germany’s power grid. Siemens Energy will supply the HVDC technology required for the project and build the shoreside station, while Dragados will be responsible for the design, procurement, construction and installation of the offshore converter platform.

Source : STRATEGIC RESEARCH INSTITUTE
voda
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Xodus Launches Major Floating Offshore Wind Study

Xodus Group has launched a three-year collaborative research project on the costs around floating offshore wind. The study, led by Xodus through the IDCORE programme, is a collaborative partnership between the Universities of Edinburgh, Strathclyde and Exeter as well as the Scottish Association for Marine Science. To enable the best industry outcomes, Xodus is issuing an open call to developers and technology suppliers to engage with the study from the outset. The project will be key to ensuring floating wind can be a serious contender in the energy mix going forward and will result in a tool designed to assist in key decision making for floating offshore wind projects. It will also create guidance to assist with project finance decision making and to reduce uncertainties in floating offshore wind energy yield assessments.

Titled ‘Improving the Bankability of Floating Offshore Wind Projects’, the study will tackle the challenges and risks that project developers have in acquiring finance for floating wind projects and develop a methodology to use floating LIDAR data for bankable energy yield assessments.

The study will explore the impacts of floating structures on modelling wind resource and incorporating the impact of met ocean conditions on site considerations.

The IDCORE programme addresses future challenges to develop leading technologies and train world-class scientists and engineers essential for the UK to sustain its global status in the ORE sector.

Xodus is already invested in IDCORE, with two of its consultants having already gained their doctorates through the scheme. With support from Xodus’ technical team, the research will be carried out by Ben Smith, a graduate from University College London.

Source : STRATEGIC RESEARCH INSTITUTE
voda
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First Power Achieved at Blauwwind Offshore Wind Project

MHI Vestas announced that the 731.5 MW Borssele III/IV offshore wind project has achieved first power, a result of close collaboration between the Blauwwind project partners and the supply chain. The turbine installation campaign began in late May 2020 and has now seen 36 of the 77 V164-9.5 MW MHI Vestas turbines secure at site. Borssele III/IV is due for completion in October 2020 and when fully installed, will supply enough clean renewable energy to power more than 825,000 Dutch households, accounting for up to 2.3% of total Dutch electricity demand. Throughout the rest of the installation campaign, it is anticipated that one additional turbine will become operational per day, following control testing. Following installation and full commissioning, MHI Vestas also holds a 15 year service agreement to operate and maintain the Borssele III/IV project.

The Borssele III/IV offshore wind project, which is situated 22 km off the coast of Zeeland, Netherlands, is being developed by the Blauwwind consortium, consisting of Partners Group, Shell, Eneco, Diamond Generating Europe and Van Oord.

On 12 December 2016 the Blauwwind Consortium was awarded by the Dutch government the right to develop, construct and operate the Borssele III/IV offshore wind project under a 30-year lease and assumed 25-year operational life after construction. The wind farms will be located 22 kilometres off the coast of the province of Zeeland in The Netherlands. TSO TenneT will build the grid connections and construct the offshore substation in the wind farm zone. The wind project will use V164 9.5MW turbines made by MHI Vestas.

Source : STRATEGIC RESEARCH INSTITUTE
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voda
0
DNV GL Served as Independent Engineer for Sale of Stake in Acciona Energía

Leading resource of independent energy experts and certification body DNV GL carried out a vendor’s technical due diligence on behalf of Kohlberg Kravis Roberts & Co Partners LLP divestment purposes from a global portfolio of renewable energy assets, Acciona Energía Internacional, where KKR held a 33.33% stake and with Acciona SA as majority shareholder. Acting as a technical advisor throughout the transaction phase, DNV GL’s team of experts ensured a quick and experienced assessment of the project’s risks and opportunities. The scope included the assessment and review of aspects such as energy production, technology, operation and maintenance arrangements, historical performance and remaining lifetime. Following the due diligence process, the transaction was successfully closed in April 2020.

The portfolio consists of 49 wind farms, two solar PV plants and one concentrated solar power plant, all in operation, located across eleven countries and totaling around 2.5 GW of installed capacity.
Source : STRATEGIC RESEARCH INSTITUTE
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