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DTU Findit

Journal article

From wind to loads: wind turbine site-specific load estimation with surrogate models trained on high-fidelity load databases

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Department of Wind Energy, Technical University of Denmark1

Wind Turbine Structures and Component Design, Department of Wind Energy, Technical University of Denmark2

Resource Assessment Modelling, Department of Wind Energy, Technical University of Denmark3

Test and Measurements, Department of Wind Energy, Technical University of Denmark4

We define and demonstrate a procedure for quick assessment of site-specific lifetime fatigue loads using simplified load mapping functions (surrogate models), trained by means of a database with high-fidelity load simulations. The performance of five surrogate models is assessed by comparing site-specific lifetime fatigue load predictions at 10 sites using an aeroelastic model of the DTU 10MW reference wind turbine.

The surrogate methods are polynomial chaos expansion, quadratic response surface, universal Kriging, importance sampling, and nearest-neighbor interpolation. Practical bounds for the database and calibration are defined via nine environmental variables, and their relative effects on the fatigue loads are evaluated by means of Sobol sensitivity indices.

Of the surrogate-model methods, polynomial chaos expansion provides an accurate and robust performance in prediction of the different site-specific loads. Although the Kriging approach showed slightly better accuracy, it also demanded more computational resources.

Language: English
Publisher: Copernicus Publications
Year: 2018
Pages: 767-790
ISSN: 23667451 and 23667443
Types: Journal article
DOI: 10.5194/wes-3-767-2018
ORCIDs: Kelly, Mark C. , Dimitrov, Nikolay Krasimirov , Vignaroli, Andrea and Berg, Jacob

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