Optimizing the Shape of Rotor Blades for Maximum Power Extraction in Marine Current Turbines

In this paper the shape of rotor blades in Marine Current Turbines (MCTs) are investigated. The evaluation of hydrodynamic loads on blades is performed based on the Blade Element Momentum (BEM) theory. The shape of blades is optimized according to the main parameters in the configuration and operat...

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Main Authors: Esfahani, J.A., Karbasian, H.R.
Format: Article
Language:English
Published: Universiti Malaysia Pahang 2012
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/3500/1/5_Esfahani_and_Karbasian.pdf
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author Esfahani, J.A.
Karbasian, H.R.
author_facet Esfahani, J.A.
Karbasian, H.R.
author_sort Esfahani, J.A.
collection UMP
description In this paper the shape of rotor blades in Marine Current Turbines (MCTs) are investigated. The evaluation of hydrodynamic loads on blades is performed based on the Blade Element Momentum (BEM) theory. The shape of blades is optimized according to the main parameters in the configuration and operation of these devices. The optimization is conducted based on the ability of the blades to harness the maximum energy during operating. The main parameters investigated are the tip speed ratio and angle of attack. Furthermore, the influence of these parameters on the maximum energy extraction from fluid flow over a hydrofoil is evaluated. It is shown that the effect of the angle of attack on power extraction is greater than that of the tip speed ratio, while both are found to be significant. Additionally, the proper angle of attack is the angle at which the lift to drag ratio is at its maximum value. However, if a proper angle of attack is chosen, the variations in power coefficient would not be effectively changed with small variations in the tip speed ratio.
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spelling UMPir35002015-03-03T08:01:34Z http://umpir.ump.edu.my/id/eprint/3500/ Optimizing the Shape of Rotor Blades for Maximum Power Extraction in Marine Current Turbines Esfahani, J.A. Karbasian, H.R. TJ Mechanical engineering and machinery In this paper the shape of rotor blades in Marine Current Turbines (MCTs) are investigated. The evaluation of hydrodynamic loads on blades is performed based on the Blade Element Momentum (BEM) theory. The shape of blades is optimized according to the main parameters in the configuration and operation of these devices. The optimization is conducted based on the ability of the blades to harness the maximum energy during operating. The main parameters investigated are the tip speed ratio and angle of attack. Furthermore, the influence of these parameters on the maximum energy extraction from fluid flow over a hydrofoil is evaluated. It is shown that the effect of the angle of attack on power extraction is greater than that of the tip speed ratio, while both are found to be significant. Additionally, the proper angle of attack is the angle at which the lift to drag ratio is at its maximum value. However, if a proper angle of attack is chosen, the variations in power coefficient would not be effectively changed with small variations in the tip speed ratio. Universiti Malaysia Pahang 2012 Article PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/3500/1/5_Esfahani_and_Karbasian.pdf Esfahani, J.A. and Karbasian, H.R. (2012) Optimizing the Shape of Rotor Blades for Maximum Power Extraction in Marine Current Turbines. International Journal of Automotive and Mechanical Engineering (IJAME), 6 (Jul. pp. 722-729. ISSN 2229-8649 (Print); 2180-1606 (Online). (Published) http://ijame.ump.edu.my/images/Volume%206/5%20Esfahani%20and%20Karbasian.pdf
spellingShingle TJ Mechanical engineering and machinery
Esfahani, J.A.
Karbasian, H.R.
Optimizing the Shape of Rotor Blades for Maximum Power Extraction in Marine Current Turbines
title Optimizing the Shape of Rotor Blades for Maximum Power Extraction in Marine Current Turbines
title_full Optimizing the Shape of Rotor Blades for Maximum Power Extraction in Marine Current Turbines
title_fullStr Optimizing the Shape of Rotor Blades for Maximum Power Extraction in Marine Current Turbines
title_full_unstemmed Optimizing the Shape of Rotor Blades for Maximum Power Extraction in Marine Current Turbines
title_short Optimizing the Shape of Rotor Blades for Maximum Power Extraction in Marine Current Turbines
title_sort optimizing the shape of rotor blades for maximum power extraction in marine current turbines
topic TJ Mechanical engineering and machinery
url http://umpir.ump.edu.my/id/eprint/3500/1/5_Esfahani_and_Karbasian.pdf
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