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Analysis of variable-frequency currents superimposed on DC currents in asynchronous HVDC links in stressing turbine-generator-exciter shafts

机译:汽轮发电机励磁轴异步直流输电中直流电流叠加在直流电流上的分析

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摘要

The paper makes an indepth analysis of the excitation of shaft torsional vibrations in steam turbine-generator-exciter shafts by variable-frequency ripple currents superimposed on DC currents in asynchronous links using the finite element and reduced models of the machine shafts. Frequencies at which sympathetic shaft torsional vibrations would be excited by modulation product harmonics in 50 Hz/50 Hz and 50 Hz/60 Hz asynchronous links as a function of deviation in system frequency are illustrated. It is shown that amplitude of shaft torque due to steady resonant torque excitation is a function of initial rate of increase of vibrations at adjacent cells, the time constant for decay of the vibration, and stiffness between adjacent shaft cells.
机译:本文利用有限元模型和简化的机轴模型,通过在异步环节中叠加在直流电流上的变频纹波电流,对汽轮发电机发电机轴的轴扭转振动的激励进行了深入分析。示出了在50 Hz / 50 Hz和50 Hz / 60 Hz异步链路中,由于系统频率偏差而引起的调制乘积谐波会激发交感轴扭转振动的频率。结果表明,由于稳定​​的共振转矩激励而引起的轴转矩幅度是相邻单元处振动的初始增加速率,振动衰减的时间常数以及相邻轴单元之间的刚度的函数。

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