A Hybrid Multistep Procedure for the Vibroacoustic Simulation of Noise Emission from Wind Turbines

IF 1.3 Q3 ACOUSTICS
M. Zarnekow, T. Grätsch, F. Ihlenburg
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引用次数: 0

Abstract

This paper proposes an efficient hybrid analytical-computational approach for the simulation of mechanical vibrations and sound radiation in wind turbine drive trains.The computational procedure encompasses the detailed modeling of vibrational sources and structural sound paths as well as the major panels of airborne noise radiation. The angle-varying mesh stiffness is obtained from a series of quasi-static finite element simulations. A novel procedure is proposed to obtain the time-varying mesh stiffness at fluctuating speed. The varying mesh stiffness is introduced as a parametric excitation in an analytical gear model, and the Fourier-transformed results are used as vibrational sources in a finite-element-based harmonic response analysis of the drive train. The present paper focuses on the modeling of gear contact and gearbox vibrations. The models and procedures are outlined, and computational results are compared to physical measurements on a 2.5 MW wind turbine. The results are in good qualitative agreement at tonal frequencies. This is particularly the case at fluctuating speed, where both the simulation and the measurement show the characteristic effect of frequency modulation. The computational procedure has been expanded to the whole drive train and is effectively applied in the conception and evaluation of design measures for the reduction of tonal amplitudes.
一种用于风力发电机噪声发射的振动声学模拟的混合多步程序
本文提出了一种有效的混合分析计算方法,用于模拟风力涡轮机传动系的机械振动和声辐射。计算过程包括振动源和结构声路的详细建模,以及空气噪声辐射的主要面板。通过一系列准静态有限元模拟获得了角度变化的网格刚度。提出了一种新的方法来获得波动速度下的时变网格刚度。在分析齿轮模型中,将变化的啮合刚度作为参数激励引入,并将傅里叶变换的结果用作传动系基于有限元的谐波响应分析中的振动源。本文主要研究齿轮接触和齿轮箱振动的建模。概述了模型和程序,并将计算结果与2.5MW风力涡轮机的物理测量结果进行了比较。结果在音调频率上有很好的定性一致性。在波动速度下尤其如此,其中模拟和测量都显示了频率调制的特征效应。该计算程序已扩展到整个传动系,并有效地应用于降低音调振幅的设计措施的概念和评估中。
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
CiteScore
3.70
自引率
0.00%
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0
审稿时长
11 weeks
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