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基于DIC方法的预制混凝土风电塔固有频率与振型测量
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(1.同济大学桥梁工程系,上海 200092;2.正锐达新能源有限公司,上海 201108;3.华中科技大学机械科学与工程学院智能制造装备与技术全国重点实验室,湖北武汉 430074;4.东方电气风电股份有限公司,四川德阳 618000;5.武汉中岩测控技术有限公司,湖北 武汉 430223;6.同纳检测认证集团有限公司,上海 200331)

作者简介:

Zhenwei Guo, D.Eng, Studying at Civil Engineering, Tongji University. Research Direction: Modified concrete materials, Bridge Engineering.

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Measurement of the Natural Frequency and Mode Shape of Prefabricated Concrete Wind Turbine Towers via the DIC Method
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(1.Department of Bridge Engineering, Tongji University, Shanghai 200092, China; 2.ZRD New Energy Solutions Co., Ltd., Shanghai 201108, China; 3.State Key Laboratory of Intelligent Manufacturing Equipment and Technology, Huazhong University of Science and Technology, Wuhan 430074, Hubei Province, China; 4.Dongfang Electric Wind Power Co., Ltd., Deyang 618000, Sichuan Province, China; 5.Wuhan Sinorock Monitor&Control Technology Co., Ltd., Wuhan 430223, Hubei Province, China; 6.Tongna Testing & Certification Group Co., Ltd., Shanghai 200331, China)

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    摘要:

    风电机组塔筒与叶轮发生共振将严重影响风电机组的安全性。针对预应力混凝土塔筒的固有频率,提出了基于数字图像相关法的测量方案:运用高通滤波与小波变换重构振动信号,然后通过welch方法计算重构信号的功率谱,根据其峰值确定固有频率后借助奇异值分解求得塔筒的一阶与二阶模态。分别在风机停机、平稳运行以及从停机过渡至平稳运行三种状态下测得混凝土塔筒的一阶固有频率为0.2631Hz,0.2636Hz,0.2782Hz,二阶固有频率为0.8624Hz,1.0397Hz,0.8374Hz。测得一阶振形均为塔筒同向弯曲,二阶振型均为塔筒反弯。DIC方法能有效测量塔筒固有频率,且操作便捷安全,具有实用价值。

    Abstract:

    Resonance between wind turbine towers and rotors can severely compromise the safety of wind turbines. This study proposes a measurement method based on the digital image correlation (DIC) technique for determining the natural frequencies of prestressed concrete towers. The approach employs high-pass filtering and wavelet transform to reconstruct vibration signals, followed by the use of Welch’s method to calculate the power spectrum of the reconstructed signals. The natural frequencies are identified from the spectral peaks, and the first- and second-order modes of the tower are determined through singular value decomposition (SVD). The measured first-order natural frequencies of the concrete tower under three operating conditions—turbine during stoppage, stable operation, and transition from stoppage to stable operation—are 0.2631 Hz, 0.2636 Hz, and 0.2782 Hz, respectively, whereas the second-order natural frequencies are 0.8624 Hz, 1.0397 Hz, and 0.8374 Hz, respectively. The first-order mode shapes correspond to unidirectional bending of the tower, and the second-order mode shapes correspond to reverse bending. The results demonstrate that the DIC method is an effective, convenient, and safe approach for measuring the natural frequencies of wind turbine towers, with significant practical value.

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Zhenwei Guo, Kangle Chen, Zhongze Sun, Lei Hong, Yan Xu, Sihang Wei Measurement of the Natural Frequency and Mode Shape of Prefabricated Concrete Wind Turbine Towers via the DIC Method. Prestress Technology 2024,2(04):26-42. 10.59238/j. pt.2024.04.002

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  • 收稿日期:2024-12-15
  • 最后修改日期:2024-12-28
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  • 在线发布日期: 2025-01-03
  • 出版日期: 2024-12-30