壳体柔性对风电齿轮箱-发电机集成系统动态特性影响
作者:
作者单位:

重庆大学 机械传动国家重点实验室,重庆 400044

作者简介:

陈锐博 (1993—),男,博士研究生,主要从事风电传动系统机电集成设计研究,(E-mail) chenruibo@cqu.edu.cn。

通讯作者:

秦大同,男,教授,(E-mail) dtqin@cqu.edu.cn。

中图分类号:

基金项目:

国家重点研发计划资助项目(2018YFB2001601)。


Dynamic characteristics of a gearbox-generator integrated system with housing flexibility
Author:
Affiliation:

State Key Laboratory for Mechanical Transmission, Chongqing University, Chongqing 400044, P. R. China

Fund Project:

Supported by National Key Research and Development Program of China (2018YFB2001601).

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    摘要:

    针对风电传动系统集成化结构,提出了一种可用于风力发电机变速-变载工况下的机电-刚柔耦合动力学模型,不仅考虑了齿轮的时变啮合刚度、相位关系、轴和壳体的结构柔性等机械因素,同时计入了发电机系统中永磁体磁饱和特性、电磁径向力波以及空间谐波等电磁因素。探究齿轮箱-发电机集成系统机电耦合动态特性,讨论了壳体柔性对系统动态特性的影响,提出了一种升速分析法,找寻了系统的共振转速。结合模态能量法和阵型矢量分布原理,找寻了共振时的潜在危险构件。研究表明:齿轮系统与发电机存在强耦合特性,壳体的柔性对系统机电耦合特性影响显著。针对集成化系统而言,齿轮内激励为共振转速下的主要激励源;但采用薄壁壳体时,发电机电磁激励不容忽视,易激发新的共振转速。选择合理的壁厚可有效提高系统的安全可靠性,减少共振区域,减轻系统构件的损坏。

    Abstract:

    For the integrated structure of the wind power transmission system, an electromechanical rigid-flexible coupling dynamics model suitable for wind turbine generator under variable-speed and variable-load conditions was proposed. This model considered mechanical factors such as time-varying meshing stiffness of gears, phase relationship, and structural flexibility of the shaft and shell, as well as electromagnetic factors such as saturation characteristics of permanent magnet, radial force wave and space harmonic wave. The electromechanical coupling dynamic characteristics of the gearbox-generator integrated system were investigated, and the influence of the flexibility of the housing on the dynamic characteristics of the system was discussed. An acceleration analysis method was introduced to identify the resonance speed of the system. By using the modal energy method and the formation vector distribution principle, potential dangerous components in resonance were identified. The results show strong coupling between the gear system and the generator. The flexibility of the housing has a significant effect on the electromechanical coupling characteristics of the system. For the integrated system, internal gear excitation is the main excitation source at the resonant speed. However, when a thin-wall housing is used, electromagnetic excitation from the generator cannot be ignored, making it easy to stimulate new resonance speeds. Selecting a reasonable thickness can effectively improve the safety and reliability of the system, reduce the resonance area and mitigate damage to system components.

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陈锐博,秦大同,刘长钊.壳体柔性对风电齿轮箱-发电机集成系统动态特性影响[J].重庆大学学报,2024,47(3):120-131.

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  • 收稿日期:2022-04-28
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  • 在线发布日期: 2024-04-02
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