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Analysis of torques in large steam turbine driven induction generator shafts following disturbances on the system supply

机译:大型蒸汽轮机驱动的感应发电机轴上的转矩随系统供应的扰动而分析

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The paper first summarises the advantages of steam turbine-driven induction generators over conventional generators such as low cost, less maintenance, rugged and brushless rotors (squirrel cage type, no need for synchronisation, etc.), together with problems concerning excitation (VAr compensation at loads etc). A mathematical model of the induction generator simulated in direct-phase quantities where saturation of the magnetising reactances is simulated and saturation of stator and rotor leakage reactances is ignored is developed and employed for detailed simulation of the machine. Discrete-mass models of the machine shaft where both steam and electrical viscous damping is simulated are employed in comparing transient shaft torsional response evaluated by time domain simulation and frequency domain analysis following incidence and clearance of severe system faults. The paper then investigates torsional response following incidence and clearance of severe supply system disturbances, when the rotor is stationary and when running at close to synchronous speed unexcited, and following malsynchronisation when excited by a controlled VAr source, together with torsional response following bolted stator-terminal short-circuits at full-load and no-load following switching in of the induction generator onto the system supply. It examines precision of predicting torque in turbine-generator shafts by frequency domain analysis not analyzed for induction generators in the literature heretofore following incidence and clearance of worst-case disturbances on the supply. Effect of steam and electrical damping on maximum shaft torques predicted by frequency domain analysis is also illustrated. The results illustrate there is no tendency for shaft torques to become more onerous as the fault clearing time is increased as is the case for shaft torques in large synchronous machines. Three large two-pole machines of rating of up to a few hundred MWs are analysed.
机译:本文首先总结了蒸汽轮机驱动的感应发电机优于常规发电机的优势,例如成本低,维护少,转子坚固耐用且无刷(鼠笼型,无需同步等),以及与励磁有关的问题(VAr补偿)负载等)。建立了感应发电机的直接相位数学模型,其中模拟了磁化电抗的饱和度,而忽略了定子和转子泄漏电抗的饱和度,并将其用于电机的详细仿真。在比较严重的系统故障的发生和清除之后,通过时域仿真和频域分析评估的瞬态轴扭转响应,将采用模拟了蒸汽和电粘性阻尼的机器轴的离散质量模型进行比较。然后,本文研究了转子静止不动时以及在接近同步速度的情况下不受激励地发生和清除严重供电系统扰动后的扭转响应,以及在受控VAr源激励下由于同步不良而产生的扭转响应以及螺栓定子的扭转响应。感应发电机接通系统电源后,满载和空载时,端子短路。它通过频域分析来检验涡轮发电机轴的转矩预测精度,该频域分析是迄今为止针对电源上最坏情况的干扰发生和清除而迄今尚未在文献中对感应发电机进行分析的。还说明了蒸汽和电阻尼对通过频域分析预测的最大轴转矩的影响。结果表明,在大型同步电机中,随着故障清除时间的增加,轴扭矩不会变得更加繁重。分析了三台额定功率高达几百兆瓦的大型两极电机。

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