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Asynchronous operation of synchronous generators under field failure

机译:现场故障下同步发电机的异步运行

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A synchronous generator is forced to asynchronous operation under sudden field failure. Under such fault condition, the general practice is to switch off the faulted machine by the action of an off-set type mho-relay after an appropriate time delay to allow for recoverable swings. This practice is good enough for salient pole hydro-alternators for which both the reactive power burden and the pulsating power component are relatively large. But these quantities are not prohibitively high for a cylindrical pole turbo-alternator. Sustained operation under field failure may be continued for limited time for them without any risk of thermal injury, provided the reactive power requirement of the alternator can be met by the system, keeping the voltage profile within acceptable limits. In this paper, the performance variables under sudden field failure for both salient and non-salient pole generators have been computed by specially constructed programs and presented in tabular form. Taking the example of a 210 MW set of BHEL, it has been established that sustained operation of a cylindrical pole generator is not harmful, particularly when the field circuit is disconnected from the source and closed through a properly chosen value of discharge resistance.
机译:在突然的现场故障下,同步发电机被迫异步运行。在这种故障情况下,通常的做法是在适当的时间延迟后通过补偿型mho继电器的作用来关闭故障机器,以允许可恢复的摆动。对于无功功率负担和脉动功率分量都较大的凸极水力交流发电机而言,这种做法足够好。但是对于圆柱极涡轮交流发电机来说,这些数量并不是很高。只要系统能够满足交流发电机的无功功率要求,并且将电压曲线保持在可接受的范围内,则可以在有限的时间内使它们在磁场故障下持续运行,而不会造成热伤害的风险。在本文中,通过特殊构造的程序计算了凸极发电机和非凸极发电机在突然电场失效下的性能变量,并以表格形式给出。以一组210兆瓦的BHEL为例,已经确定,圆柱极发电机的持续运行无害,特别是当现场电路从电源断开并通过适当选择的放电电阻值闭合时。

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