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Design of Horizontal Axis Wind Turbine

Author(s):

Neel Shankarlal Patel , Dr. S. & S.S. Ghandhy Government Engineering College, Surat; Denish C. Patel, BITS-Pilani; Rushabh A. Shah, Dr. S. & S.S. Ghandhy Government Engineering College, Surat; Nayan K. Desai, Dr. S. & S.S. Ghandhy Government Engineering College, Surat; Kuldeep H. Nayi, Government Engineering College - Valsad

Keywords:

Wind Turbine, HAWT, BEM Theory, Parametric Study, Maximization of efficiency and QBlade V0.8

Abstract

The objective of this study is to design a wind turbine. The design process includes the selection of the wind turbine type and the determination of the blade airfoil, pitch angle distribution along the radius, and chord length distribution along the radius. The pitch angle and chord length distributions are optimized based on conservation of angular momentum and theory of aerodynamic forces on an airfoil. Blade Element Momentum (BEM) theory is first derived then used to conduct a parametric study that will determine if the optimized values of blade pitch and chord length create the most efficient blade geometry. This work includes a discussion of the most important parameters in wind turbine blade design to maximize efficiency. QBlade V0.8, an integration of different versatile software like xfoil, XLR5, 360 extrapolation using Montgomerie and Viterna theory, has been used for simulation.

Other Details

Paper ID: IJSRDV4I90187
Published in: Volume : 4, Issue : 9
Publication Date: 01/12/2016
Page(s): 208-211

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