Traditionally, the optimisation of a Diffuser Augmented Wind Turbine has focused on maximising power output. However, due to the often less than ideal location of small-scale turbines, cut-in speed and starting time are of equal importance in maximising Annual Energy Production, which is the ultimate goal of any wind turbine design. This paper proposes a method of determining power output, cut-in speed and starting time using a combination of Computational Fluid Dynamics and Blade Element Momentum theory. The proposed method has been validated against published experimental data
This study is about the analysis of miniature wind turbine using Computational Fluids Dynamics (CFD)...
Abstract. A diffuser augmented wind turbine (DAWT) is considered an important application of the adv...
It is well established that the power generated by a Horizontal-Axis Wind Turbine (HAWT) is a functi...
Traditionally, the optimisation of a Diffuser Augmented Wind Turbine has focused on maximising power...
Summarization: The Blade Element Momentum (BEM) theory is nowadays the cornerstone of the horizontal...
This thesis aims to explore the performance limits of diffuser augmented wind turbines. Many studie...
In this study, a combination of CFD (Computational Fluid Dynamics) and BEM (Blade Element Momentum M...
Reported experimental and computational fluid dynamic (CFD) studies have demonstrated significant po...
This project aims to model and analyze the different flow control methods to improve the wind turbin...
Predictions of the performance of operating wind turbines are challenging for many reasons including...
This article illustrates the improved wind energy capture of a standard small-scale wind turbine wit...
A method to design a diffuser augmented wind turbine (DAWT) is proposed, using as a guiding point th...
The purpose of this paper is to explore and define an adequate numerical setting for the computation...
Due to their potential to beat the Betz–Joukowsky limit for power extraction, diffuser-augmented win...
In this paper, a computational approach, based on the solution of Reynolds-averaged-Navier–Stokes (R...
This study is about the analysis of miniature wind turbine using Computational Fluids Dynamics (CFD)...
Abstract. A diffuser augmented wind turbine (DAWT) is considered an important application of the adv...
It is well established that the power generated by a Horizontal-Axis Wind Turbine (HAWT) is a functi...
Traditionally, the optimisation of a Diffuser Augmented Wind Turbine has focused on maximising power...
Summarization: The Blade Element Momentum (BEM) theory is nowadays the cornerstone of the horizontal...
This thesis aims to explore the performance limits of diffuser augmented wind turbines. Many studie...
In this study, a combination of CFD (Computational Fluid Dynamics) and BEM (Blade Element Momentum M...
Reported experimental and computational fluid dynamic (CFD) studies have demonstrated significant po...
This project aims to model and analyze the different flow control methods to improve the wind turbin...
Predictions of the performance of operating wind turbines are challenging for many reasons including...
This article illustrates the improved wind energy capture of a standard small-scale wind turbine wit...
A method to design a diffuser augmented wind turbine (DAWT) is proposed, using as a guiding point th...
The purpose of this paper is to explore and define an adequate numerical setting for the computation...
Due to their potential to beat the Betz–Joukowsky limit for power extraction, diffuser-augmented win...
In this paper, a computational approach, based on the solution of Reynolds-averaged-Navier–Stokes (R...
This study is about the analysis of miniature wind turbine using Computational Fluids Dynamics (CFD)...
Abstract. A diffuser augmented wind turbine (DAWT) is considered an important application of the adv...
It is well established that the power generated by a Horizontal-Axis Wind Turbine (HAWT) is a functi...