Extreme Wind Turbine Response During Operation

John Dalsgaard Sørensen, Søren R.K. Nielsen

Research output: Contribution to book/anthology/report/conference proceedingArticle in proceedingResearchpeer-review

6 Citations (Scopus)

Abstract

Estimation of extreme response values is very important for structural design of wind turbines. Due to the influence of control system and nonlinear structural behavior the extreme response is usually assessed based on simulation of turbulence time series. In this paper the problem of statistical load extrapolation is considered using techniques from structural reliability theory. Different simulation techniques to estimate extreme response characteristics are described and compared, including crude Monte Carlo simulation, Importance Sampling, and splitting methods such as the Russian Roulette and the Double and Clump algorithm. A statistically consistent technique is described for including statistical uncertainty and assessing the extreme 50-year response using simulated time series and conditioned on the model parameters. The peak over threshold method together with the Maximum Likelihood Method provides a tool to obtain consistent estimates incl. the statistical uncertainty. An illustrative example indicates that the statistical uncertainty is important compared to the coefficient of variation of the extreme response when the number of 10 minutes simulations at each mean wind speed is limited to 10.
Original languageEnglish
Title of host publicationThe Second Conference on The science of making Torque from the Wind
Number of pages8
PublisherTechnical University of Denmark (DTU)
Publication date2007
DOIs
Publication statusPublished - 2007
EventEAWE : The science of making Torque from the Wind - Copenhagen, Denmark
Duration: 28 Aug 200731 Aug 2007
Conference number: 2

Conference

ConferenceEAWE : The science of making Torque from the Wind
Number2
Country/TerritoryDenmark
CityCopenhagen
Period28/08/200731/08/2007

Keywords

  • Wind turbines
  • Wind energy
  • Structural design

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