Optimization of Small Horizontal Axis Wind Turbines Based on Aerodynamic, Steady-State, and Dynamic Analyses

IF 3.8 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS
K. Deghoum, Mohammed T Gherbi, Hakim S. Sultan, A. N. Jameel Al-Tamimi, A. Abed, O. Abdullah, H. Mechakra, A. Boukhari
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引用次数: 1

Abstract

In this article, the model of a 5 kW small wind turbine blade is developed and improved. Emphasis has been placed on improving the blade’s efficiency and aerodynamics and selecting the most optimal material for the wind blade. The QBlade software was used to enhance the chord and twist. Also, a new finite element model was developed using the ANSYS software to analyze the structure and modal problems of the wind blade. The results presented the wind blade’s von Mises stresses and deformations using three different materials (Carbon/epoxy, E-Glass/epoxy, and braided composite). The modal analysis results presented the natural frequencies and mode shapes for each material. It was found, based on the results, that the maximum deflections of E-glass, braided composite and carbon fiber were 46.46 mm, 33.54 mm, and 18.29 mm, respectively.
基于气动、稳态和动态分析的小型水平轴风力机优化
本文对5kW小型风力发电机叶片模型进行了改进和发展。重点是提高叶片的效率和空气动力学,并为风力叶片选择最合适的材料。QBlade软件用于增强弦和扭转。同时,利用ANSYS软件建立了一个新的有限元模型,对叶片的结构和模态问题进行了分析。结果显示了使用三种不同材料(碳/环氧树脂、E-玻璃/环氧树脂和编织复合材料)的风叶的von Mises应力和变形。模态分析结果显示了每种材料的固有频率和振型。结果表明,E-玻璃、编织复合材料和碳纤维的最大挠度分别为46.46mm、33.54mm和18.29mm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied System Innovation
Applied System Innovation Mathematics-Applied Mathematics
CiteScore
7.90
自引率
5.30%
发文量
102
审稿时长
11 weeks
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