Andrés Meana-Fernández

Thermal Machines and Engines Area



Contact

Andrés Meana-Fernández

Thermal Machines and Engine Area


Curriculum vitae


andresmf[at]uniovi[dot]es


Department of Energy

University of Oviedo




Andrés Meana-Fernández

Thermal Machines and Engines Area


andresmf[at]uniovi[dot]es


Department of Energy

University of Oviedo



Application of Richardson extrapolation method to the CFD simulation of vertical-axis wind turbines and analysis of the flow field


Journal article


A. Meana-Fernández, J. F. Fernández Oro, K. A. Argüelles Díaz, M. Galdo-Vega, S. Velarde-Suárez
Engineering Applications of Computational Fluid Mechanics, vol. 13(1), 2019, pp. 359-376


Cite

Cite

APA   Click to copy
Meana-Fernández, A., Oro, J. F. F., Díaz, K. A. A., Galdo-Vega, M., & Velarde-Suárez, S. (2019). Application of Richardson extrapolation method to the CFD simulation of vertical-axis wind turbines and analysis of the flow field. Engineering Applications of Computational Fluid Mechanics, 13(1), 359–376. https://doi.org/10.1080/19942060.2019.1596160


Chicago/Turabian   Click to copy
Meana-Fernández, A., J. F. Fernández Oro, K. A. Argüelles Díaz, M. Galdo-Vega, and S. Velarde-Suárez. “Application of Richardson Extrapolation Method to the CFD Simulation of Vertical-Axis Wind Turbines and Analysis of the Flow Field.” Engineering Applications of Computational Fluid Mechanics 13, no. 1 (2019): 359–376.


MLA   Click to copy
Meana-Fernández, A., et al. “Application of Richardson Extrapolation Method to the CFD Simulation of Vertical-Axis Wind Turbines and Analysis of the Flow Field.” Engineering Applications of Computational Fluid Mechanics, vol. 13, no. 1, 2019, pp. 359–76, doi:10.1080/19942060.2019.1596160.


BibTeX   Click to copy

@article{a2019a,
  title = {Application of Richardson extrapolation method to the CFD simulation of vertical-axis wind turbines and analysis of the flow field},
  year = {2019},
  issue = {1},
  journal = {Engineering Applications of Computational Fluid Mechanics},
  pages = {359-376},
  volume = {13},
  doi = {10.1080/19942060.2019.1596160},
  author = {Meana-Fernández, A. and Oro, J. F. Fernández and Díaz, K. A. Argüelles and Galdo-Vega, M. and Velarde-Suárez, S.}
}

Abstract

There is still discrepancy regarding the verification of CFD U-RANS simulations of vertical-axis wind turbines (VAWTs). In this work, the applicability of the Richardson extrapolation method to assess mesh convergence is studied for several points in the power curve of a VAWT. A 2D domain of the rotor is simulated with three different meshes, monitoring the turbine power coefficient as the convergence parameter. This method proves to be a straightforward procedure to assess convergence of VAWT simulations. Guidelines regarding the required mesh and temporal discretization levels are provided. Once the simulations are validated, the flow field at three characteristic tip-speed ratio values (2.5 - low, 4 - nominal and 5 - high) is analyzed, studying pressure, velocity, turbulent kinetic energy and vorticity fields. The results have revealed two main vortex shedding mechanisms, blade- and rotor-related. Vortex convection develops differently depending on the rotor zone (upwind, downwind, windward or leeward). Finally, insight into the loss of performance at off-design conditions is provided. Vortex shedding phenomena at the low tip-speed ratio explains the loss of performance of the turbine, whereas at the high tip-speed ratio, this performance loss may be ascribed to viscous effects and the rapid interaction between successive blade passings.

Keywords

Vertical-axis wind turbine; Richardson extrapolation; grid convergence analysis; flow behavior analysis; turbine performance





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