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风力机启停机过程中的振动特征分析
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Analysis of Wind Turbine Vibration Characteristics during Startup and Shutdown Process
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    摘要:

    风力机运行中由于受到环境荷载和叶轮转动的激励作用,塔架产生振动,影响风力机寿命.为了分析风力机在启停机过程中的振动规律和动态特性,对1.5 MW风力机塔顶的振动进行了长期监测,并采用基于数据驱动的随机子空间法识别了结构一阶自振频率和阻尼比.对监测结果进行统计分析,发现该风力机在并网转速附近运行的时段较多,当风力机启动经过并网转速时,有明显的共振现象,而风力机停机经过并网转速时,共振现象则不明显.模态识别的结果表明,一阶自振频率随运行工况不同而微幅变化,风力机启动经过并网转速时的阻尼比较小,风力机停机经过并网转速时的阻尼比相对较大.此外,基于Sommerfeld效应对风力机启停机过程中的不同振动现象进行了解释.本文成果对于掌握同类型风力机的振动特性和动力参数优化具有借鉴意义.

    Abstract:

    Wind turbines vibrate under the excitation of environmental loads and rotor movement in normal operating conditions, and vibrations of the tower affect the service life of such system. In order to analyze the vibration and dynamic characteristics of the wind turbine during startup and shutdown process, vibration of a 1.5 MW turbine tower was monitored for a long term. First-order natural frequencies and damping ratios of the wind turbine were identified utilizing a data-driven stochastic subspace identification method. Monitoring data revealed that the wind turbine usually operated near the rotation speed of grid connection. In addition, obvious resonance at the turbine startup was noted as it surpassed the rotation speed of grid connection, but was not apparent at the turbine shutdown. Modal identification results revealed that the first-order natural frequencies varied slightly under different operating conditions, while the damping ratios were found to be smaller when the wind turbine started up, and its rotation speed surpassed that of grid connection, which were found to be greater at turbine shutdown. In addition, the characteristics of different vibration phenomena in the turbine during startup and shutdown processes were explained with the Sommerfeld effect. Our findings contribute to the field of vibration analysis and allow for more efficient optimization of dynamic parameters in wind turbines of similar design.

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赵艳,潘嘉宁,王振宇?覮,林葵庚,蒋建群.风力机启停机过程中的振动特征分析[J].湖南大学学报:自然科学版,2019,46(3):82~89

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  • 在线发布日期: 2019-03-26
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