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2020
Book Article
Title

Cost of wind energy modeling

Abstract
In order to optimise the yield of wind power from existing and future wind plants, the entire breadth of the system of a plant, from the wind field to the turbine components, needs to be modelled in the design process. The modelling and simulation approaches used in each subsystem as well as the system-wide solution methods to optimize across subsystem boundaries are described in this reference. Chapters are written by technical experts in each field, describing the current state of the art in modelling and simulation for wind plant design. This comprehensive, two-volume research reference will provide long-lasting insight into the methods that will need to be developed for the technology to advance into its next generation. Volume 1 covers the computing challenges in full turbine modelling, then discusses bridging scales in the atmosphere and turbulence modelling, wind forecasting, wind plant flow, and plant level controller design.
Author(s)
Maureen Hand, M.
National Renewable Energy Laboratory
Berkhout, Volker  
Fraunhofer Institute for Energy Economics and Energy System Technology IEE  
Schwabe1, Paul
California Air Resources Board
Weir, David
Norges vassdrags- og energidirektorat
Wiser, Ryan H.
Lawrence Berkeley National Laboratory
Journal
Wind Energy Modeling and Simulation
DOI
10.1049/pbpo125g_ch9
Language
English
Fraunhofer-Institut für Energiewirtschaft und Energiesystemtechnik IEE  
Keyword(s)
  • Atmospheric turbulence

  • Atmospheric turbulence modelling

  • Blade-resolved modeling

  • Blades

  • Exascale computing

  • Mesoscale atmosphere modeling

  • power engineering computing

  • Power generation control

  • Power generation planning

  • Power system simulation

  • Wind energy modeling

  • Wind plant simulation

  • Wind power

  • Wind power forecasting

  • Wind power plants

  • Wind turbines

  • Wind-farm flows

  • Wind-plant-controller design

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