This paper presents a new dynamic inflow model for vertical-axis wind turbines (VAWTs). The model uses the principle of Duhamel's integral. The indicial function of the inflow- and crossflow-induction required to apply Duhamel's integral is represented by an exponential function depending on the thrust coefficient and the azimuthal position. The parameters of this approximation are calibrated using a free wake vortex model. The model is compared with the results of a vortex model and higher fidelity computational fluid dynamic (CFD) simulations for the response of an actuator cylinder to a step input of the thrust and to a cyclic thrust. It is found that the discrepancies of the dynamic inflow model increase with increasing reduced frequenc...
Unlike the conventional aerodynamic applications, the straight-bladed vertical axis wind turbines (V...
The complex unsteady aerodynamics of vertical axis wind turbines (VAWT) poses significant challenges...
A coupled CFD/rotor dynamics modeling approach is presented for the analysis of realistic transient ...
This paper presents a new dynamic inflow model for vertical-axis wind turbines (VAWTs). The model us...
This paper investigates the need for dynamic inflow models for vertical axis wind turbines (VAWTs). ...
Two new engineering models are presented for the aerodynamic induction of a wind turbine under dynam...
AbstractRecently the interest in developing vertical axis wind turbines (VAWTs) for offshore applica...
Floating offshore wind turbines may experience large surge motions, which can cause blade–vortex int...
An ever-increasing demand for electricity pushes the wind energy industry to deep waters that favor ...
An ever-increasing demand for electricity pushes the wind energy industry to deep waters that favor ...
International audienceThis study focuses on the impact of the aerodynamic model on the dynamic respo...
This paper studies the flow field and power generation from a Vertical Axis Wind Turbine (VAWT) by e...
International audienceFloating Offshore Wind Turbines (FOWTs) can have a very unsteady aerodynamic b...
Horizontal axis wind turbines (HAWTs) experience yaw misalignments due to the physical limitations o...
Unlike the conventional aerodynamic applications, the straight-bladed vertical axis wind turbines (V...
Unlike the conventional aerodynamic applications, the straight-bladed vertical axis wind turbines (V...
The complex unsteady aerodynamics of vertical axis wind turbines (VAWT) poses significant challenges...
A coupled CFD/rotor dynamics modeling approach is presented for the analysis of realistic transient ...
This paper presents a new dynamic inflow model for vertical-axis wind turbines (VAWTs). The model us...
This paper investigates the need for dynamic inflow models for vertical axis wind turbines (VAWTs). ...
Two new engineering models are presented for the aerodynamic induction of a wind turbine under dynam...
AbstractRecently the interest in developing vertical axis wind turbines (VAWTs) for offshore applica...
Floating offshore wind turbines may experience large surge motions, which can cause blade–vortex int...
An ever-increasing demand for electricity pushes the wind energy industry to deep waters that favor ...
An ever-increasing demand for electricity pushes the wind energy industry to deep waters that favor ...
International audienceThis study focuses on the impact of the aerodynamic model on the dynamic respo...
This paper studies the flow field and power generation from a Vertical Axis Wind Turbine (VAWT) by e...
International audienceFloating Offshore Wind Turbines (FOWTs) can have a very unsteady aerodynamic b...
Horizontal axis wind turbines (HAWTs) experience yaw misalignments due to the physical limitations o...
Unlike the conventional aerodynamic applications, the straight-bladed vertical axis wind turbines (V...
Unlike the conventional aerodynamic applications, the straight-bladed vertical axis wind turbines (V...
The complex unsteady aerodynamics of vertical axis wind turbines (VAWT) poses significant challenges...
A coupled CFD/rotor dynamics modeling approach is presented for the analysis of realistic transient ...