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Computational analysis of high-lift-generating airfoils for diffuser-augmented wind turbines

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  • Additional Information
    • Publication Information:
      Copernicus GmbH, 2021.
    • Publication Date:
      2021
    • Abstract:
      The impetus towards sustainable energy production and energy access has led to considerable research and development on decentralized generators, in particular diffuser-augmented wind turbines. This paper aims to characterize the performance of diffuser-augmented wind turbines (DAWTs) using high-lift airfoils employing a three-step computational analysis. The study is based on computational fluid dynamics, and the analysis is carried out by solving the unsteady Reynolds-averaged Navier–Stokes (URANS) equations in two dimensions. The rotor blades are modeled as an actuator disk, across which a pressure drop is imposed analogous to a three-dimensional rotor. We study the change in performance of the enclosed turbine with varying diffuser cross-sectional geometry. In particular, this paper characterizes the effect of a flange on the flow augmentation provided by the diffuser. We conclude that at the end of the three-step analysis, Eppler 423 showed the maximum velocity augmentation.
    • File Description:
      application/pdf
    • ISSN:
      2366-7451
    • Accession Number:
      10.5194/wes-6-149-2021
    • Rights:
      OPEN
    • Accession Number:
      edsair.doi.dedup.....4b19d0a30cae2b215dc5b78bd6a8e8d2