Integration of Optimum Power for Wind Turbine Blade at Different Cross Section

Muhammad A. R. Yass, Saadi T. Kurdi, Mahmood Abdulzahra Shkara
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引用次数: 2

Abstract

This research analysis and optimizes the main wind horizontal turbine blade parameters for high-performance altitude with variable pitch blade angle for different blade cross-section unsymmetrical airfoil NACA 4412 and unsymmetrical airfoil supercritical Eppler 417. For deep specification, some wind horizontal turbine parameters kept constant through the proses method to integrate the highest behavior of windmill turbine power coefficient. The procedure analysis with FORTRAN.90 code ,then compare with German code and then optimized using Schmitz and Betz method for blade chord and lift to drag for blade pitch angle. From theoretical results discussion, important conclusions figured; also a recommendation for further work was suggested. Best optimization methods were Schmitz chord optimization and Lift/Drag twist optimization which increases the Cp 10.3% for Eppler 4417 and 9.5% for NACA 4412.All results were tabulated and plotted for all optimization results
风力机叶片不同截面最优功率的集成
本文针对不同叶片截面非对称翼型NACA 4412和超临界非对称翼型Eppler 417,分析并优化了高性能变桨距叶片角的主要风力水平涡轮叶片参数。对于深度规格,通过proses方法将风力机的一些水平参数保持不变,以综合风力机功率系数的最高性能。采用FORTRAN.90代码进行程序分析,并与德代码进行比较,最后对叶片弦线和叶片俯仰角升阻分别采用Schmitz和Betz法进行优化。从理论结果讨论中得出重要结论;会议还提出了进一步工作的建议。最佳优化方法为Schmitz弦优化和升/阻扭优化,Eppler 4417和NACA 4412的Cp分别提高10.3%和9.5%。将所有优化结果制成表格并绘制
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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