Computational Fluid Dynamics is thought to provide in the near future an essential contribution to the development of vertical-axis wind turbines, helping this technology to rise towards a more mature industrial diffusion. The unsteady flow past rotating blades is, however, one of the most challenging applications for a numerical simulation and some critical issues have not been settled yet.In this work, an extended analysis is presented which has been carried out with the final aim of identifying the most effective simulation settings to ensure a reliable fully-unsteady, two-dimensional simulation of an H-type Darrieus turbine.Moving from an extended literature survey, the main analysis parameters have been selected and their influence has...
In spite of the attractiveness of CFD methods and advanced measurement methods, there is still no fu...
Darrieus vertical axis wind turbines (VAWTs) have been recently identified as the most promising sol...
Darrieus Vertical Axis Wind Turbines (VAWTs) have been recently identified as the most promising sol...
Computational Fluid Dynamics is thought to provide in the near future an essential contribution to t...
Thanks to the continuous improvement of calculation resources, computational fluid dynamics (CFD) is...
This paper presents the force interaction between fluid flow and a rotating H-type Darrieus vertical...
Energized by the recent rapid progress in high-performance computing and the growing availability of...
AbstractVertical axis wind turbines like the Darrieus turbine appear to be promising for the conditi...
Navier-Stokes computational fluid dynamics simulations are expected to provide the basis for a deepe...
Navier-Stokes computational fluid dynamics simulations are expected to provide the basis for a deepe...
To improve the efficiency of Darrieus wind turbines, whichstill lacks from that of horizontal-axis r...
To improve the efficiency of Darrieus wind turbines, whichstill lacks from that of horizontal-axis r...
In spite of the attractiveness of CFD methods and advanced measurement methods, there is still no fu...
Darrieus vertical axis wind turbines (VAWTs) have been recently identified as the most promising sol...
Darrieus Vertical Axis Wind Turbines (VAWTs) have been recently identified as the most promising sol...
Computational Fluid Dynamics is thought to provide in the near future an essential contribution to t...
Thanks to the continuous improvement of calculation resources, computational fluid dynamics (CFD) is...
This paper presents the force interaction between fluid flow and a rotating H-type Darrieus vertical...
Energized by the recent rapid progress in high-performance computing and the growing availability of...
AbstractVertical axis wind turbines like the Darrieus turbine appear to be promising for the conditi...
Navier-Stokes computational fluid dynamics simulations are expected to provide the basis for a deepe...
Navier-Stokes computational fluid dynamics simulations are expected to provide the basis for a deepe...
To improve the efficiency of Darrieus wind turbines, whichstill lacks from that of horizontal-axis r...
To improve the efficiency of Darrieus wind turbines, whichstill lacks from that of horizontal-axis r...
In spite of the attractiveness of CFD methods and advanced measurement methods, there is still no fu...
Darrieus vertical axis wind turbines (VAWTs) have been recently identified as the most promising sol...
Darrieus Vertical Axis Wind Turbines (VAWTs) have been recently identified as the most promising sol...