基于非线性谐波法的风力机气动力学分析

S. W. Naung, M. Rahmati, H. Farokhi
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引用次数: 9

摘要

本文对风力发电机组进行了气动力学分析。本文的特点是采用了基于频率的非线性调和法,这是一种研究涡轮机械非定常周期流动和气弹性的有效计算方法,并对非线性调和法与传统时域求解方法进行了广泛的验证。本文是作者对墨西哥(受控条件下模型转子实验)风力机空气动力学分析工作的扩展。本文对MEXICO-Experiment风力机和1.5 MW风力机进行了气动力学分析。采用传统的时域解法和非线性调和法,并对非线性调和法进行了验证和比较。对每种方法使用相同的数值设置表明了每种解决方法的差异和能力,以及它们的计算费用。最后,本文总结了如何利用非线性谐波方法有效地进行大型风力机的气动力学分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aeromechanical Analysis of Wind Turbines Using Non-Linear Harmonic Method
In this paper, aeromechanical analysis of wind turbines is presented. The distinctive feature of this paper is the use of frequency based non-linear harmonic method which is an efficient computational method to study unsteady periodic flow and aeroleasticity of turbomachinery applications, and extensive validation of the non-linear harmonic method against conventional time domain solution methods. This paper is an extension of the authors’ previous work which analysed the aerodynamics of the MEXICO (Model Rotor Experiments In Controlled Conditions) Experiment wind turbine. Aeromechanical analysis of the MEXICO-Experiment wind turbine as well as 1.5 MW wind turbine are conducted in this study. Both conventional time domain solution method and non-linear harmonic method are used, and compared to each other for validation and verification of the non-liner harmonic method. Using the same numerical set-up for each method demonstrates the differences and capabilities of each solution method, and their computational expenses. Finally, this paper concludes with how the aeromechanical analysis of large wind turbines can be performed effectively and efficiently using the non-linear harmonic method.
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