PERFORMANCE ENHANCEMENT OF A DARRIUS 3-BLADED WIND TURBINE USING CONVERGENT-DIVERGENT DUCTING SYSTEM

Several studies on energy augmentation systems were achieved to improve the productivity of the wind turbines. The ducting system is one of the most important applications used for this purpose. The convergent -divergent vertical ducting system was used to enhance the performance of the turbine. The...

Full description

Bibliographic Details
Main Authors: ABDULLATEEF A. JADALLAH, SAHAR R. FARAG, JINAN D. HAMDI
Format: Article
Language:English
Published: Taylor's University 2018-07-01
Series:Journal of Engineering Science and Technology
Subjects:
TSR
Online Access:http://jestec.taylors.edu.my/Vol%2013%20issue%207%20July%202018/13_7_1.pdf
id doaj-26c04d435bb746f6beb4e09900813cee
record_format Article
spelling doaj-26c04d435bb746f6beb4e09900813cee2020-11-25T00:30:59ZengTaylor's UniversityJournal of Engineering Science and Technology1823-46902018-07-0113718911904PERFORMANCE ENHANCEMENT OF A DARRIUS 3-BLADED WIND TURBINE USING CONVERGENT-DIVERGENT DUCTING SYSTEMABDULLATEEF A. JADALLAH0SAHAR R. FARAG1JINAN D. HAMDI2Department of Electromechanical Engineering, University of Technology, IraqDepartment of Electromechanical Engineering, University of Technology, IraqDepartment of Electromechanical Engineering, University of Technology, IraqSeveral studies on energy augmentation systems were achieved to improve the productivity of the wind turbines. The ducting system is one of the most important applications used for this purpose. The convergent -divergent vertical ducting system was used to enhance the performance of the turbine. The ducted wind turbine was analysed and simulated using MATLAB code built for this purpose and numerically employing ANSYS FLUENT 17.2. The performance and the airflow behaviour through the duct were presented and compared with those of the vertical axis wind turbine (VAWT). The results of both approaches were presented and compared with the experimental results for the two cases considered in this work. They showed good agreement. The power coefficient enhanced by 39.024% at the opening angle of the 20 ° and exit angle 12° angle and, the power coefficient enhanced by 35.89% at opening angle by 12° and exit angle equal to 20°. Ducting system was experienced and possessed good augmentation tool of the wind turbine performance. Experimentation and analysis of this work can easily be reflected to other configurations of wind turbine rotors.http://jestec.taylors.edu.my/Vol%2013%20issue%207%20July%202018/13_7_1.pdfCDVAWTCoefficient of performanceVAWT; Turbine bladesTSR
collection DOAJ
language English
format Article
sources DOAJ
author ABDULLATEEF A. JADALLAH
SAHAR R. FARAG
JINAN D. HAMDI
spellingShingle ABDULLATEEF A. JADALLAH
SAHAR R. FARAG
JINAN D. HAMDI
PERFORMANCE ENHANCEMENT OF A DARRIUS 3-BLADED WIND TURBINE USING CONVERGENT-DIVERGENT DUCTING SYSTEM
Journal of Engineering Science and Technology
CDVAWT
Coefficient of performance
VAWT; Turbine blades
TSR
author_facet ABDULLATEEF A. JADALLAH
SAHAR R. FARAG
JINAN D. HAMDI
author_sort ABDULLATEEF A. JADALLAH
title PERFORMANCE ENHANCEMENT OF A DARRIUS 3-BLADED WIND TURBINE USING CONVERGENT-DIVERGENT DUCTING SYSTEM
title_short PERFORMANCE ENHANCEMENT OF A DARRIUS 3-BLADED WIND TURBINE USING CONVERGENT-DIVERGENT DUCTING SYSTEM
title_full PERFORMANCE ENHANCEMENT OF A DARRIUS 3-BLADED WIND TURBINE USING CONVERGENT-DIVERGENT DUCTING SYSTEM
title_fullStr PERFORMANCE ENHANCEMENT OF A DARRIUS 3-BLADED WIND TURBINE USING CONVERGENT-DIVERGENT DUCTING SYSTEM
title_full_unstemmed PERFORMANCE ENHANCEMENT OF A DARRIUS 3-BLADED WIND TURBINE USING CONVERGENT-DIVERGENT DUCTING SYSTEM
title_sort performance enhancement of a darrius 3-bladed wind turbine using convergent-divergent ducting system
publisher Taylor's University
series Journal of Engineering Science and Technology
issn 1823-4690
publishDate 2018-07-01
description Several studies on energy augmentation systems were achieved to improve the productivity of the wind turbines. The ducting system is one of the most important applications used for this purpose. The convergent -divergent vertical ducting system was used to enhance the performance of the turbine. The ducted wind turbine was analysed and simulated using MATLAB code built for this purpose and numerically employing ANSYS FLUENT 17.2. The performance and the airflow behaviour through the duct were presented and compared with those of the vertical axis wind turbine (VAWT). The results of both approaches were presented and compared with the experimental results for the two cases considered in this work. They showed good agreement. The power coefficient enhanced by 39.024% at the opening angle of the 20 ° and exit angle 12° angle and, the power coefficient enhanced by 35.89% at opening angle by 12° and exit angle equal to 20°. Ducting system was experienced and possessed good augmentation tool of the wind turbine performance. Experimentation and analysis of this work can easily be reflected to other configurations of wind turbine rotors.
topic CDVAWT
Coefficient of performance
VAWT; Turbine blades
TSR
url http://jestec.taylors.edu.my/Vol%2013%20issue%207%20July%202018/13_7_1.pdf
work_keys_str_mv AT abdullateefajadallah performanceenhancementofadarrius3bladedwindturbineusingconvergentdivergentductingsystem
AT saharrfarag performanceenhancementofadarrius3bladedwindturbineusingconvergentdivergentductingsystem
AT jinandhamdi performanceenhancementofadarrius3bladedwindturbineusingconvergentdivergentductingsystem
_version_ 1725324530169151488