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Offshore wind power production in critical weather conditions

Offshore wind power production in critical weather conditions. Nicolaos Cutululis, DTU Wind Energy Marisciel Litong-Palima, DTU Wind Energy Poul Sørensen, DTU Wind Energy.

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Offshore wind power production in critical weather conditions

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  1. Offshore wind power production in critical weather conditions Nicolaos Cutululis, DTU WindEnergy Marisciel Litong-Palima, DTU WindEnergy Poul Sørensen, DTU WindEnergy

  2. Transmission system operation with large penetration of Wind and other renewable Electricity sources in Networks by means of innovative Tools and Integrated Energy Solutions TWENTIES Transmission system operation with large penetrationofWind and other renewableElectricity sources inNetworks by means of innovativeTools and IntegratedEnergySolutions

  3. 10 European Member States 1 Associated Country Consortium and budget United Kingdom (2) ALSTOM GRID UNIVERSITY OF STRATHCLYDE Denmark (3) DONG ENERGY ENERGINET DTU ENERGY France (2) RTE EDF Norway SINTEF Ireland UCD The Netherlands TENNET Portugal INESC-PORTO Germany (3) FRAUNHOFER IWES 50 HzT SIEMENS Wind Power Spain (5) RED ELECTRICA DE ESPAÑA IBERDROLA ITT COMILLAS GAMESA ABB S.A. Belgium (6) ELIA SYSTEM OPERATOR EWEA CORESO UNIVERSITY LIEGE UNIVERSITY LEUVEN UNIVERSITE LIBRE BRUXELLES Total budget: 56.8 M€ EU contribution: 31.8 M€ Italy RSE

  4. Project objectives Task force 1: What are the valuable contributions that intermittent generation and flexible load can bring to system services? 6 high level demonstration objectives Task force 2:What should the network operators implement to allow for off-shore wind development? Task force 3: How to give more flexibility to the transmission grid? 2 replication objectives Overall:How scalable and replicable are the results within the entire pan-European electricity system?

  5. DEMO 4 STORM MANAGEMENT (Leader: ENERGINET) Wind power Water power www.twenties-project.eu

  6. Replication work packages: barriers and up scaling www.twenties-project.eu

  7. Future offshore projects in Denmark www.twenties-project.eu

  8. Upscaling of Horns Rev 2 to > 3 GW offshore wind Base2.811 MW High: 3.211 MW www.twenties-project.eu

  9. Wind turbine storm control www.twenties-project.eu

  10. Wind turbine storm control www.twenties-project.eu

  11. Wind farm storm control www.twenties-project.eu

  12. CorWind model for simulation of Correlated Wind power fluctuations 2002 2007 2009 Wind turbine(s) Wind farm Power system area www.twenties-project.eu

  13. CorWind Weather model data to include (hourly) meanwind speed variations www.twenties-project.eu

  14. CorWind Extendedgeographicalarea – variable meanwind speed and direction (from weather model) www.twenties-project.eu

  15. Critical weather periods www.twenties-project.eu

  16. Reserve Requirements www.twenties-project.eu

  17. Results – duration curves www.twenties-project.eu

  18. Results – percentiles www.twenties-project.eu

  19. Conclusions • Offshore wind power development is on an early stage today, and willcontributemassively to future European energysupply • Offshore wind power is concentrated in relatively small geographicalarea, e.g. 50 x 100 km on the West Coast of Denmark • Criticalweatherconditionscanlead to large variations in offshore wind power production • In 2020 scenario, in excess of 2000 MW of wind power canbe lost in an hourduringcriticalweatherconditions in Denmark • A smootherwind turbine storm controlwillimprove the needs of reserves in the system • TWENTIES projectwillassess the European impact 2020 and 2030 of planned offshore wind power www.twenties-project.eu

  20. Thankyou! “Unveiling the future energy system:full scale demonstrations to reach 2020 targets” TWENTIES Workshop Room 18, 13:00 – 18:00 Contact: Nicolaos A. Cutululis niac@dtu.dk www.twenties-project.eu

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