Experimental and numerical investigation into effect of different blade configurations on performance of small-scale wind turbines

Experimental investigations and numerical analysis using Ansys CFD software of the effect of different blade configurations on the performance of small-scale wind turbines are presented in this paper. A complete test rig of small-scale wind turbine is built, and three-dimensional computational model...

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Main Authors: E.A.E. Ahmed Mohamed, Abdellatif, O.E., A.M. Osman
Format: Article
Language:English
Published: Elsevier 2021-09-01
Series:Energy Reports
Subjects:
CFD
Online Access:http://www.sciencedirect.com/science/article/pii/S2352484721003899
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spelling doaj-8294961834924ae7a49a37f35d7241fc2021-09-29T04:25:45ZengElsevierEnergy Reports2352-48472021-09-017138143Experimental and numerical investigation into effect of different blade configurations on performance of small-scale wind turbinesE.A.E. Ahmed Mohamed0Abdellatif, O.E.1A.M. Osman2National Research University “Moscow Power Engineering Institute”, Moscow, 111250, Russia; Benha University, Faculty of Engineering at Shoubra, Mechanical Engineering Department, Benha, Egypt; Corresponding author at: National Research University “Moscow Power Engineering Institute”, Moscow, 111250, Russia.Benha University, Faculty of Engineering at Shoubra, Mechanical Engineering Department, Benha, EgyptBenha University, Faculty of Engineering at Shoubra, Mechanical Engineering Department, Benha, EgyptExperimental investigations and numerical analysis using Ansys CFD software of the effect of different blade configurations on the performance of small-scale wind turbines are presented in this paper. A complete test rig of small-scale wind turbine is built, and three-dimensional computational model of the rotor system is created and simulated using Realizable K−εturbulent model to evaluate the performance of four types of blade configurations (Twisted blades with NACA0012, Straight (untwisted) blades with NACA0012, Twisted blades with NACA4418, Straight (untwisted) blades with NACA4418). The experimental and numerical analysis has been carried out at various wind speeds in the range of 2 m/s to 8 m/s to study the variation of power coefficient for different configurations of blades with wind speed and choose the most effective design of blades. The results show that the numerical solution over predicts the power produced compared to the experimental test field for all tested blades configurations. The maximum deviation was around 15 percent between the numerical and experimental results and decreased with increasing wind speed. Untwisted blades with NACA0012 are the most effective design of blades suitable for small scale wind turbine based on numerical and experimental results, giving an average of actual power coefficient (Cp = 0.41). Compared to all tested configuration, this design is simple in manufacturing with minimum cost.http://www.sciencedirect.com/science/article/pii/S2352484721003899Renewable energyCFDHAWTTwisted bladesUntwisted bladesNACA0012 and NACA4418
collection DOAJ
language English
format Article
sources DOAJ
author E.A.E. Ahmed Mohamed
Abdellatif, O.E.
A.M. Osman
spellingShingle E.A.E. Ahmed Mohamed
Abdellatif, O.E.
A.M. Osman
Experimental and numerical investigation into effect of different blade configurations on performance of small-scale wind turbines
Energy Reports
Renewable energy
CFD
HAWT
Twisted blades
Untwisted blades
NACA0012 and NACA4418
author_facet E.A.E. Ahmed Mohamed
Abdellatif, O.E.
A.M. Osman
author_sort E.A.E. Ahmed Mohamed
title Experimental and numerical investigation into effect of different blade configurations on performance of small-scale wind turbines
title_short Experimental and numerical investigation into effect of different blade configurations on performance of small-scale wind turbines
title_full Experimental and numerical investigation into effect of different blade configurations on performance of small-scale wind turbines
title_fullStr Experimental and numerical investigation into effect of different blade configurations on performance of small-scale wind turbines
title_full_unstemmed Experimental and numerical investigation into effect of different blade configurations on performance of small-scale wind turbines
title_sort experimental and numerical investigation into effect of different blade configurations on performance of small-scale wind turbines
publisher Elsevier
series Energy Reports
issn 2352-4847
publishDate 2021-09-01
description Experimental investigations and numerical analysis using Ansys CFD software of the effect of different blade configurations on the performance of small-scale wind turbines are presented in this paper. A complete test rig of small-scale wind turbine is built, and three-dimensional computational model of the rotor system is created and simulated using Realizable K−εturbulent model to evaluate the performance of four types of blade configurations (Twisted blades with NACA0012, Straight (untwisted) blades with NACA0012, Twisted blades with NACA4418, Straight (untwisted) blades with NACA4418). The experimental and numerical analysis has been carried out at various wind speeds in the range of 2 m/s to 8 m/s to study the variation of power coefficient for different configurations of blades with wind speed and choose the most effective design of blades. The results show that the numerical solution over predicts the power produced compared to the experimental test field for all tested blades configurations. The maximum deviation was around 15 percent between the numerical and experimental results and decreased with increasing wind speed. Untwisted blades with NACA0012 are the most effective design of blades suitable for small scale wind turbine based on numerical and experimental results, giving an average of actual power coefficient (Cp = 0.41). Compared to all tested configuration, this design is simple in manufacturing with minimum cost.
topic Renewable energy
CFD
HAWT
Twisted blades
Untwisted blades
NACA0012 and NACA4418
url http://www.sciencedirect.com/science/article/pii/S2352484721003899
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AT amosman experimentalandnumericalinvestigationintoeffectofdifferentbladeconfigurationsonperformanceofsmallscalewindturbines
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