A 3D potential flow solver with unsteady force free wake model intended for optimization of blade shape for wind power generation is applied on a test case scenario formed by a wind turbine with vertical axis of rotation. The calculation is sensitive to correct modelling of wake and its interaction with blades. The validity of the flow solver is verified by comparing experimentally obtained performance data of model rotor with numerical results
Wind power is currently one of the cleanest and widely distributed renewable energy sources serving ...
Since the 1970s several research activities had been carried out on developing aerodynamic models fo...
This paper presents a model for the evaluation of aerodynamic and inertial contributions to a vertic...
In the present study, a computational fluid dynamic (CFD)-based blade optimization algorithm is intr...
The present research frontier on wind turbine wake analysis is leading to a massive use of large-edd...
Wind energy is expected to play an important role in meeting the ever- increasing energy requirement...
AbstractThis paper presents a method for calculating the flow around a wind turbine rotor. The real ...
The evolution of the wake of a wind turbine contributes significantly to its operation and performan...
The analysis of wind turbine wakes' structure and interaction with other machines installed in the s...
A comparison of several incrementally complex methods for predicting wind turbine performance, aeroe...
A 3D unsteady multi-body panel method is developed that can model arbitrary geometries. The method h...
The aerodynamics of a wind turbine is governed by the flowaround the rotor, where the prediction of ...
The evolution of the wake of a wind turbine contributes significantly to its operation and performan...
Abstract Turbine efficiency remains a critical component of the overall economic justification for a...
Computational modeling of flow fields in the vicinity of the blades of the low cost horizontal axis ...
Wind power is currently one of the cleanest and widely distributed renewable energy sources serving ...
Since the 1970s several research activities had been carried out on developing aerodynamic models fo...
This paper presents a model for the evaluation of aerodynamic and inertial contributions to a vertic...
In the present study, a computational fluid dynamic (CFD)-based blade optimization algorithm is intr...
The present research frontier on wind turbine wake analysis is leading to a massive use of large-edd...
Wind energy is expected to play an important role in meeting the ever- increasing energy requirement...
AbstractThis paper presents a method for calculating the flow around a wind turbine rotor. The real ...
The evolution of the wake of a wind turbine contributes significantly to its operation and performan...
The analysis of wind turbine wakes' structure and interaction with other machines installed in the s...
A comparison of several incrementally complex methods for predicting wind turbine performance, aeroe...
A 3D unsteady multi-body panel method is developed that can model arbitrary geometries. The method h...
The aerodynamics of a wind turbine is governed by the flowaround the rotor, where the prediction of ...
The evolution of the wake of a wind turbine contributes significantly to its operation and performan...
Abstract Turbine efficiency remains a critical component of the overall economic justification for a...
Computational modeling of flow fields in the vicinity of the blades of the low cost horizontal axis ...
Wind power is currently one of the cleanest and widely distributed renewable energy sources serving ...
Since the 1970s several research activities had been carried out on developing aerodynamic models fo...
This paper presents a model for the evaluation of aerodynamic and inertial contributions to a vertic...