Document of bibliographic reference 356408

BibliographicReference record

Type
Bibliographic resource
Type of document
Journal article
BibLvlCode
AS
Title
The Global Atlas for Siting Parameters project: Extreme wind, turbulence, and turbine classes
Abstract
The Global Atlas for Siting Parameters project compiles a suite of models into a complex modeling system, uses up-to-date global datasets, and creates global atlases of siting parameters at a spatial resolution of 275 m. These parameters include the 50-year wind, turbulence, and turbine class recommendations based on relevant generic turbines. The suite of models includes the microscale Linear Computational Model (LINCOM), a statistical, spectral correction method here revised for strong convective areas and tropical cyclone affected areas, two turbulence models with four setups, and load models. To this complexity, an uncertainty model was developed to classify the various sources of uncertainties for both the extreme wind and the turbulence calculations, and accordingly, atlases of uncertainty classification were created. Preliminary validation of the global calculations of the 50-year wind and turbulence is done through comparisons with measurements, and the results are promising. This is the first time the siting parameters are obtained with such a high spatial resolution and shared on open data portal. It is expected to benefit the global wind energy planning and development.
WebOfScience code
https://www.webofscience.com/wos/woscc/full-record/WOS:000840398100001
Bibliographic citation
Larsén, X.G.; Davis, N.; Hannesdóttir, Á.; Kelly, M.; Svenningsen, L.; Slot, R.; Imberger, M.; Olsen, B.T.; Floors, R. (2022). The Global Atlas for Siting Parameters project: Extreme wind, turbulence, and turbine classes. Wind Energ. 25(11): 1841-1859. https://dx.doi.org/10.1002/we.2771
Topic
Marine
Is peer reviewed
true
Access rights
open access
Is accessible for free
true

Authors

author
Name
Xiaoli Guo Larsén
author
Name
Neil Davis
author
Name
Ásta Hannesdóttir
author
Name
Mark Kelly
author
Name
Lasse Svenningsen
author
Name
René Slot
author
Name
Marc Imberger
author
Name
Bjarke Tobias Olsen
author
Name
Rogier Floors

Links

referenced creativework
type
DOI
accessURL
https://dx.doi.org/10.1002/we.2771

Document metadata

date created
2022-10-14
date modified
2022-10-26