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Torsional vibration characteristics and experimental study of cracked rotor system with torsional oscillation

机译:扭转振荡裂纹转子系统的扭转振动特性及实验研究

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摘要

Root causes of numerous crack failures are attributed to the torsional oscillation between the turbine generator and the grid. To prevent such kind of failures, torsional vibration monitoring system has been intensively installed in reality and the torsional vibration is more and more observed in the operation. However, the mechanism of the characteristics of torsional vibration of the rotor system with and without cracks has not been well explored. Therefore this work presents the dynamic analysis and experimental study on the rotor system with transverse and slant cracks. For simulating the torsional oscillation in reality, excitation device is designed in the experiments and torsional vibration is measured. Based on this, the characteristics of lateral and torsional vibration of the rotor system are compared. The results show that, (i) although the slant crack presents more significant later-torsional vibration (especially for the breathing crack), the transverse cracked rotor system show higher amplitudes in the fundamental frequency and harmonic components (especially for the open crack) and (ii) the torsional excitation introduces more obvious vibration fluctuation in the rotor system with cracks (observed from the orbits and the torsional vibration).
机译:许多裂纹故障的根本原因归因于涡轮发电机和电网之间的扭转振荡。为了防止这种故障,在现实中密集地安装了扭转振动监测系统,并且在操作中越来越多地观察到扭转振动。然而,探索了具有和不裂缝的转子系统的扭转振动特性的机制并未得到很好的探索。因此,这项工作介绍了横向和倾斜裂缝转子系统的动态分析和实验研究。为了模拟现实的扭转振荡,在实验中设计了激励装置,并测量扭转振动。基于此,比较了转子系统的横向和扭转振动的特性。结果表明,(i)虽然倾斜裂缝具有更大的外侧扭转振动(特别是对于呼吸裂缝),但横裂的转子系统在基频和谐波部件(特别是对于开口裂缝)和(ii)扭转激励引入了具有裂缝的转子系统中的更明显的振动波动(从轨道和扭转振动观察)。

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